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            <resTitle>National Cooperative Soil Survey Crawford County Soils from Web Soil Survey</resTitle>
            <date>
                <pubDate>2020-11-06T00:00:00</pubDate>
                <createDate>2020-11-05T00:00:00</createDate>
            </date>
            <resEd>First Editiion</resEd>
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                <rpOrgName>Crawford County Planning Office, Crawford County Government</rpOrgName>
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                <fgdcGeoform>vector digital data</fgdcGeoform>
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        <idAbs>&lt;DIV STYLE="text-align:Left;"&gt;&lt;DIV&gt;&lt;DIV&gt;&lt;P&gt;&lt;SPAN&gt;Soil is a naturally occurring mixture of mineral and organic ingredients with a definite form, structure, and composition.  The exact composition of soil changes from one location to another.  One of the main tools available to help land users determine the potentials and limitations of soils is a soil survey.  This soil survey was produced with data from the United States Department of Agriculture's Natural Resources Conservation Service (NRCS) in cooperation with other Federal, State, and local agencies.  To produce a customized soil survey for your own area of interest, visit Web Soil Survey - &lt;/SPAN&gt;&lt;A href="https://websoilsurvey.sc.egov.usda.gov:443/App/HomePage.htm" STYLE="text-decoration:underline;"&gt;&lt;SPAN&gt;https://websoilsurvey.sc.egov.usda.gov/App/HomePage.htm&lt;/SPAN&gt;&lt;/A&gt;&lt;SPAN&gt;.  During a soil survey, soil scientists walk over the landscapes, bore holes with soil augers, and examine cross sections of soil profiles.  They determine the texture, color, structure, and reaction of the soil and the relationship and thickness of the different soil horizons.  Some soils are sampled and tested at soil survey laboratories for certain soil property determinations, such as cation-exchange capacity and bulk density.  Like any tool, a soil survey is helpful only if you know what it can and can't do, and if you use it accordingly.  However, the survey does not replace careful onsite investigation or analysis by a soil scientist or other certified professional. &lt;/SPAN&gt;&lt;/P&gt;&lt;P&gt;&lt;SPAN&gt;This feature class contains polygon features based off surveying conduct by the National Cooperative Soil Survey partnership. The National Cooperative Soil Survey (NCSS) is a nationwide partnership of Federal, regional, State, and local agencies and private entities and institutions. This partnership works to cooperatively investigate, inventory, document, classify, interpret, disseminate, and publish information about soils. NCSS standards are common or shared procedures that enhance technology transfer, data sharing, and communications among soil survey participants. Each polygon soil feature is contains a "Soil Map Unit" designation and a unique "Map Unit Identification Number" that was used to link (join) soil report data for all Crawford County soils types from Web Soil Survey covering a variety of characteristics and qualities that relate to the nature of each soil's dominant component type as it relates to farmland resources and urban development conditions.  This feature class can be used for the purpose of generally modeling soils conditions based on their suitability for urban development over large areas, determining areas for general preservation, and to identify soil characteristics that may be suitable for guiding the process of Pennsylvania Stormwater Management Act (PA Act 167) reviews.  Information provided within this feature class is general in nature and land interests should conduct site specific testing to determine the composition and characteristics of soils at any particular location before undertaking land use and land management actions.  &lt;/SPAN&gt;&lt;/P&gt;&lt;P&gt;&lt;SPAN&gt;Users of this feature class and the fields contained therein are solely responsible for interpretations made from this product.  For specific questions concerning the use of our analysis products, email nri@wdc.usda.gov.  Please be sure to note in your e-mail which product you are using (Web Soil Survey + National Cooperative Soil Survey Soil Map Units).&lt;/SPAN&gt;&lt;/P&gt;&lt;P&gt;&lt;SPAN&gt;Fields within this feature class cover a variety of data metrics and other information that can support analysis of development conditions.  A basic summary of the more substantive fields is provided as follows: &lt;/SPAN&gt;&lt;/P&gt;&lt;UL&gt;&lt;LI&gt;&lt;P&gt;&lt;SPAN&gt;MAP_UNIT_NAME - A naming convention applied to each soil feature based on its dominant soil component and related characteristics. &lt;/SPAN&gt;&lt;/P&gt;&lt;/LI&gt;&lt;LI&gt;&lt;P&gt;&lt;SPAN&gt;FARMLAND_CLASSIFICATION - Indicates the importance of each soil feature's farmland resources. &lt;/SPAN&gt;&lt;/P&gt;&lt;/LI&gt;&lt;LI&gt;&lt;P&gt;&lt;SPAN&gt;SLIPPAGE_POTENTIAL_RATING - A rating applied to each soil feature that indicates its potential for landslides and other forms of slippage if the conditions of the soil are altered and development activities are undertaken. &lt;/SPAN&gt;&lt;/P&gt;&lt;/LI&gt;&lt;LI&gt;&lt;P&gt;&lt;SPAN&gt;APPROX_DEPTH_TO_WATERTABLE_CM - An estimate of the approximately depth in centimeters within a soil feature before reaching the water table. &lt;/SPAN&gt;&lt;/P&gt;&lt;/LI&gt;&lt;LI&gt;&lt;P&gt;&lt;SPAN&gt;REPRESENTATIVE_SLOPE_PERCENT - An estimate of the approximately average slope of a soil feature. &lt;/SPAN&gt;&lt;/P&gt;&lt;/LI&gt;&lt;LI&gt;&lt;P&gt;&lt;SPAN&gt;HYDROLOGIC_GROUP - The hydrologic group classification of a particular soil feature. &lt;/SPAN&gt;&lt;/P&gt;&lt;/LI&gt;&lt;LI&gt;&lt;P&gt;&lt;SPAN&gt;SURFACE_RUNOFF - A classification applied to soil features based upon its estimated ratio of surface water runoff. &lt;/SPAN&gt;&lt;/P&gt;&lt;/LI&gt;&lt;LI&gt;&lt;P&gt;&lt;SPAN&gt;WATER_TABLE_KIND - A classification applied to each soil feature based upon the characteristics of its water table if applicable. &lt;/SPAN&gt;&lt;/P&gt;&lt;/LI&gt;&lt;LI&gt;&lt;P&gt;&lt;SPAN&gt;PONDING_DURATION - An classification of a soil feature's estimated duration of surface water ponding if such event occurs for that soil feature. &lt;/SPAN&gt;&lt;/P&gt;&lt;/LI&gt;&lt;LI&gt;&lt;P&gt;&lt;SPAN&gt;PONDING_FREQUENCY - An classification of the frequency of ponding for a soil feature. &lt;/SPAN&gt;&lt;/P&gt;&lt;/LI&gt;&lt;LI&gt;&lt;P&gt;&lt;SPAN&gt;FLOODING_DURATION - An classification of a soil feature's estimated duration of flooding if such event occurs for that soil feature. &lt;/SPAN&gt;&lt;/P&gt;&lt;/LI&gt;&lt;LI&gt;&lt;P&gt;&lt;SPAN&gt;FLOODING_FREQUENCY - An classification of the frequency of flooding for a soil feature. &lt;/SPAN&gt;&lt;/P&gt;&lt;/LI&gt;&lt;LI&gt;&lt;P&gt;&lt;SPAN&gt;REPRESENTATIVE_LANDFORM - A classification of the landform common to the soil feature. &lt;/SPAN&gt;&lt;/P&gt;&lt;/LI&gt;&lt;LI&gt;&lt;P&gt;&lt;SPAN&gt;HYDRIC_STATUS - A field based on a determination of whether a soil feature has been classified generally as hydrologic. &lt;/SPAN&gt;&lt;/P&gt;&lt;/LI&gt;&lt;LI&gt;&lt;P&gt;&lt;SPAN&gt;HYDRIC_CRITERIA_MET - A field indicating which hydric status criteria have been determined to be present for a soil feature. &lt;/SPAN&gt;&lt;/P&gt;&lt;/LI&gt;&lt;LI&gt;&lt;P&gt;&lt;SPAN&gt;NATIONAL_COMMODITY_CROP_PRODUCTIVITY_INDEX - A standardized index used to indicate the productivity of a soil feature for cropland. &lt;/SPAN&gt;&lt;/P&gt;&lt;/LI&gt;&lt;LI&gt;&lt;P&gt;&lt;SPAN&gt;LIMITATIONS_DWELLINGS_WO_BASEMENTS - A classification based upon an analysis of a soil feature's characteristics to determine the extent of its limitations for dwellings without basements. &lt;/SPAN&gt;&lt;/P&gt;&lt;/LI&gt;&lt;LI&gt;&lt;P&gt;&lt;SPAN&gt;LIMITATIONS_DWELLINGS_W_BASEMENTS - A classification based upon an analysis of a soil feature's characteristics to determine the extent of its limitations for dwellings with basements. &lt;/SPAN&gt;&lt;/P&gt;&lt;/LI&gt;&lt;LI&gt;&lt;P&gt;&lt;SPAN&gt;SMALL_COMMERCIAL_BUILDINGS - A classification based upon an analysis of a soil feature's characteristics to determine the extent of its limitations for small commercial buildings. &lt;/SPAN&gt;&lt;/P&gt;&lt;/LI&gt;&lt;LI&gt;&lt;P&gt;&lt;SPAN&gt;LAND_CAPABILITY_CLASS_NONIRRIGATED - A classification of a soil feature's farmland capability. &lt;/SPAN&gt;&lt;/P&gt;&lt;/LI&gt;&lt;LI&gt;&lt;P&gt;&lt;SPAN&gt;LAND_CAPABILITY_SUBCLASS_NONIRRIGATED - A sub-classification of a soil feature's farmland capability based upon a determination of its main limiting factor.&lt;/SPAN&gt;&lt;/P&gt;&lt;/LI&gt;&lt;LI&gt;&lt;P&gt;&lt;SPAN&gt;LESA - A numeric field used to represent a soil's land evaluation score. &lt;/SPAN&gt;&lt;/P&gt;&lt;/LI&gt;&lt;/UL&gt;&lt;/DIV&gt;&lt;/DIV&gt;&lt;/DIV&gt;</idAbs>
        <idPurp>This feature class contains polygon features based off surveying conduct by the National Cooperative Soil Survey partnership. The National Cooperative Soil Survey (NCSS) is a nationwide partnership of Federal, regional, State, and local agencies and private entities and institutions. This partnership works to cooperatively investigate, inventory, document, classify, interpret, disseminate, and publish information about soils. NCSS standards are common or shared procedures that enhance technology transfer, data sharing, and communications among soil survey participants. Each polygon soil feature is contains a "Soil Map Unit" designation and a unique "Map Unit Identification Number" that was used to link (join) soil report data for all Crawford County soils types from Web Soil Survey covering a variety of characteristics and qualities that relate to the nature of each soil's dominant component type as it relates to farmland resources and urban development conditions.  This feature class can be used for the purpose of generally modeling soils conditions based on their suitability for urban development over large areas, determining areas for general preservation, and to identify soil characteristics that may be suitable for guiding the process of Pennsylvania Stormwater Management Act (PA Act 167) reviews.  Information provided within this feature class is general in nature and land interests should conduct site specific testing to determine the composition and characteristics of soils at any particular location before undertaking land use and land management actions.  </idPurp>
        <idCredit>Complied by the Crawford County Planning Office from data supplied by the United State's Department of Agriculture Natural Resources Conservation Service.  </idCredit>
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            <rpIndName>Crawford County Planning Office</rpIndName>
            <rpOrgName>Crawford County Government</rpOrgName>
            <rpCntInfo>
                <cntPhone>
                    <voiceNum tddtty="">814-333-7341</voiceNum>
                </cntPhone>
                <cntAddress addressType="physical">
                    <delPoint>903 Diamond Park</delPoint>
                    <city>Meadville</city>
                    <adminArea>Pennsylvania</adminArea>
                    <postCode>16335</postCode>
                    <country>US</country>
                    <eMailAdd>planning@co.crawford.pa.us</eMailAdd>
                </cntAddress>
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                <RoleCd value="006"/>
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            <keyword>Crawford County</keyword>
            <keyword>Crawford County Planning Office</keyword>
            <keyword>Crawford County Planning Commission</keyword>
            <keyword>Crawford County Conservation District</keyword>
            <keyword>Soils</keyword>
            <keyword>Environmental Management</keyword>
            <keyword>PA Act 167</keyword>
            <keyword>Stormwater Management</keyword>
            <keyword>Farmland Classification</keyword>
            <keyword>Developable Lands Analysis</keyword>
            <keyword>Community Planning</keyword>
            <keyword>Planning</keyword>
            <keyword>Natural Resources.</keyword>
        </themeKeys>
        <searchKeys>
            <keyword>Crawford County</keyword>
            <keyword>Crawford County Planning Office</keyword>
            <keyword>Crawford County Planning Commission</keyword>
            <keyword>Crawford County Conservation District</keyword>
            <keyword>Soils</keyword>
            <keyword>Environmental Management</keyword>
            <keyword>PA Act 167</keyword>
            <keyword>Stormwater Management</keyword>
            <keyword>Farmland Classification</keyword>
            <keyword>Developable Lands Analysis</keyword>
            <keyword>Community Planning</keyword>
            <keyword>Planning</keyword>
            <keyword>Natural Resources.</keyword>
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                <useLimit>&lt;DIV STYLE="text-align:Left;"&gt;&lt;DIV&gt;&lt;DIV&gt;&lt;P&gt;&lt;SPAN&gt;For use only by the staff of Crawford County, Pennsylvania and other official registered organizations by special invitation from the Crawford County Planning Office. &lt;/SPAN&gt;&lt;/P&gt;&lt;P&gt;&lt;SPAN&gt;Upon using any of the data available via this service, you agree to the following disclaimer linked below:&lt;/SPAN&gt;&lt;/P&gt;&lt;P STYLE="margin:0 0 11 0;"&gt;&lt;A href="https://www.crawfordcountypa.net/GIS/Documents/Crawford%20County%20PA%20GIS%20Web_Data%20Disclaimer.pdf?Web=1" STYLE="text-decoration:underline;"&gt;&lt;SPAN STYLE="text-decoration:underline;"&gt;&lt;SPAN&gt;Click here for Crawford County, PA GIS Web/Data Disclaimer&lt;/SPAN&gt;&lt;/SPAN&gt;&lt;/A&gt;&lt;/P&gt;&lt;/DIV&gt;&lt;/DIV&gt;&lt;/DIV&gt;</useLimit>
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                            <tmBegin>2020-10-28</tmBegin>
                            <tmEnd>2020-11-05</tmEnd>
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                    <westBL>-80.534359</westBL>
                    <eastBL>-79.601916</eastBL>
                    <northBL>41.867730</northBL>
                    <southBL>41.471641</southBL>
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                <srcDesc>This feature class was developed by combining spatial data compiled for the National Cooperative Soil Survey with reports generated by the United State's Department of Agriculture's Natural Resources Conservation Service Web Soil Survey application. </srcDesc>
                <srcMedName>
                    <MedNameCd value="none"/>
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                    <resTitle>United State's Department of Agriculture - Natural Resources Conservation Service. </resTitle>
                    <resAltTitle>United State's Department of Agriculture - Natural Resources Conservation Service. </resAltTitle>
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            <enttyp>
                <enttypl>CCSDE.PLANNING.Soils</enttypl>
                <enttypd>Feature classes are homogeneous collections of common features, each having the same spatial representation, such as points, lines, or polygons, and a common set of attribute columns.</enttypd>
                <enttypds>Esri</enttypds>
                <enttypt Sync="TRUE">Feature Class</enttypt>
                <enttypc Sync="TRUE">0</enttypc>
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                <attrlabl>OBJECTID</attrlabl>
                <attrdef>Internal feature number.</attrdef>
                <attrdefs>Esri</attrdefs>
                <attrdomv>
                    <udom>Sequential unique whole numbers that are automatically generated.</udom>
                </attrdomv>
                <attrtype>OID</attrtype>
                <attwidth>4</attwidth>
                <attalias Sync="TRUE">OBJECTID</attalias>
                <atprecis Sync="TRUE">10</atprecis>
                <attscale Sync="TRUE">0</attscale>
            </attr>
            <attr>
                <attrlabl>AREASYMBOL</attrlabl>
                <attrdef>The designation for Crawford County, Pennsylvania (PA039). </attrdef>
                <attrdefs>United States Department of Agriculture - Natural Resources Conservations Service</attrdefs>
                <attrdomv>
                    <edom>
                        <edomv>PA039</edomv>
                        <edomvd>Crawford County, Pennsylvania</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                </attrdomv>
                <attrtype>String</attrtype>
                <attwidth>20</attwidth>
                <attalias Sync="TRUE">AREASYMBOL</attalias>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
            </attr>
            <attr>
                <attrlabl>SPATIALVER</attrlabl>
                <attrdef>A sequential integer number used to denote the serial version of the spatial data for a soil survey area. </attrdef>
                <attrdefs>United States Department of Agriculture - Natural Resources Conservations Service</attrdefs>
                <attrdomv>
                    <udom>Character Field. </udom>
                </attrdomv>
                <attrtype>Double</attrtype>
                <attwidth>5</attwidth>
                <attalias Sync="TRUE">SPATIALVER</attalias>
                <atprecis Sync="TRUE">38</atprecis>
                <attscale Sync="TRUE">8</attscale>
            </attr>
            <attr>
                <attrlabl>MUSYM</attrlabl>
                <attrdef>Used to uniquely identify the Soil Map Unit in the soil survey. </attrdef>
                <attrdefs>United States Department of Agriculture - Natural Resources Conservations Service</attrdefs>
                <attrdomv>
                    <udom>Character Field</udom>
                </attrdomv>
                <attrtype>String</attrtype>
                <attwidth>6</attwidth>
                <attalias>Map Unit Symbol</attalias>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
            </attr>
            <attr>
                <attrlabl>MUKEY</attrlabl>
                <attrdef>The unique identifier of a record in the Soils_Relational_Table used to join records with their corresponding Map Unit features in the soil survey. </attrdef>
                <attrdefs>United States Department of Agriculture - Natural Resources Conservations Service</attrdefs>
                <attrdomv>
                    <udom>Character Field</udom>
                </attrdomv>
                <attrtype>String</attrtype>
                <attwidth>30</attwidth>
                <attalias>Map Unit Key</attalias>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
            </attr>
            <attr>
                <attrlabl>Shape</attrlabl>
                <attrdef>Feature geometry.</attrdef>
                <attrdefs>Esri</attrdefs>
                <attrdomv>
                    <udom>Coordinates defining the features.</udom>
                </attrdomv>
                <attrtype>Geometry</attrtype>
                <attwidth>100</attwidth>
                <attalias Sync="TRUE">Shape</attalias>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
            </attr>
            <attr>
                <attrlabl>Shape.STArea()</attrlabl>
                <attrdef>Auto calculated Esri field.  </attrdef>
                <attrdefs>Auto calculated by Esri. </attrdefs>
                <attrdomv>
                    <udom>Values are variable. </udom>
                </attrdomv>
                <attrtype>Double</attrtype>
                <attwidth>100</attwidth>
                <attalias Sync="TRUE">Shape.STArea()</attalias>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
            </attr>
            <attr>
                <attrlabl>Shape.STLength()</attrlabl>
                <attrdef>Auto calculated Esri field.  </attrdef>
                <attrdefs>Auto calculated by Esri. </attrdefs>
                <attrdomv>
                    <udom>Values are variable. </udom>
                </attrdomv>
                <attrtype>Double</attrtype>
                <attwidth>100</attwidth>
                <attalias Sync="TRUE">Shape.STLength()</attalias>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
            </attr>
            <attr>
                <attrlabl>MAP_UNIT_NAME</attrlabl>
                <attrdef>The map units delineated on the detailed soil maps in a soil survey represent the soils or miscellaneous areas in the survey area. The map unit descriptions in this report, along with the maps, can be used to determine the composition and properties of a unit.

A map unit delineation on a soil map represents an area dominated by one or more major kinds of soil or miscellaneous areas. A map unit is identified and named according to the taxonomic classification of the dominant soils. Within a taxonomic class there are precisely defined limits for the properties of the soils. On the landscape, however, the soils are natural phenomena, and they have the characteristic variability of all natural phenomena. Thus, the range of some observed properties may extend beyond the limits defined for a taxonomic class. Areas of soils of a single taxonomic class rarely, if ever, can be mapped without including areas of other taxonomic classes. Consequently, every map unit is made up of the soils or miscellaneous areas for which it is named, soils that are similar to the named components, and some minor components that differ in use and management from the major soils.

Most of the soils similar to the major components have properties similar to those of the dominant soil or soils in the map unit, and thus they do not affect use and management. These are called noncontrasting, or similar, components. They may or may not be mentioned in a particular map unit description. Some minor components, however, have properties and behavior characteristics divergent enough to affect use or to require different management. These are called contrasting, or dissimilar, components. They generally are in small areas and could not be mapped separately because of the scale used. Some small areas of strongly contrasting soils or miscellaneous areas are identified by a special symbol on the maps. If included in the database for a given area, the contrasting minor components are identified in the map unit descriptions along with some characteristics of each. A few areas of minor components may not have been observed, and consequently they are not mentioned in the descriptions, especially where the pattern was so complex that it was impractical to make enough observations to identify all the soils and miscellaneous areas on the landscape.

The presence of minor components in a map unit in no way diminishes the usefulness or accuracy of the data. The objective of mapping is not to delineate pure taxonomic classes but rather to separate the landscape into landforms or landform segments that have similar use and management requirements. The delineation of such segments on the map provides sufficient information for the development of resource plans. If intensive use of small areas is planned, however, onsite investigation is needed to define and locate the soils and miscellaneous areas.

An identifying symbol precedes the map unit name in the map unit descriptions. Each description includes general facts about the unit and gives important soil properties and qualities.

Soils that have profiles that are almost alike make up a soil series. All the soils of a series have major horizons that are similar in composition, thickness, and arrangement. Soils of a given series can differ in texture of the surface layer, slope, stoniness, salinity, degree of erosion, and other characteristics that affect their use. On the basis of such differences, a soil series is divided into soil phases. Most of the areas shown on the detailed soil maps are phases of soil series. The name of a soil phase commonly indicates a feature that affects use or management. For example, Alpha silt loam, 0 to 2 percent slopes, is a phase of the Alpha series.

Some map units are made up of two or more major soils or miscellaneous areas. These map units are complexes, associations, or undifferentiated groups.

A complex consists of two or more soils or miscellaneous areas in such an intricate pattern or in such small areas that they cannot be shown separately on the maps. The pattern and proportion of the soils or miscellaneous areas are somewhat similar in all areas. Alpha-Beta complex, 0 to 6 percent slopes, is an example.

An association is made up of two or more geographically associated soils or miscellaneous areas that are shown as one unit on the maps. Because of present or anticipated uses of the map units in the survey area, it was not considered practical or necessary to map the soils or miscellaneous areas separately. The pattern and relative proportion of the soils or miscellaneous areas are somewhat similar. Alpha-Beta association, 0 to 2 percent slopes, is an example.

An undifferentiated group is made up of two or more soils or miscellaneous areas that could be mapped individually but are mapped as one unit because similar interpretations can be made for use and management. The pattern and proportion of the soils or miscellaneous areas in a mapped area are not uniform. An area can be made up of only one of the major soils or miscellaneous areas, or it can be made up of all of them. Alpha and Beta soils, 0 to 2 percent slopes, is an example.

Some surveys include miscellaneous areas. Such areas have little or no soil material and support little or no vegetation. Rock outcrop is an example.

Additional information about the map units described in this report is available in other soil reports, which give properties of the soils and the limitations, capabilities, and potentials for many uses. Also, the narratives that accompany the soil reports define some of the properties included in the map unit descriptions.</attrdef>
                <attrdefs>United States Department of Agriculture - Natural Resources Conservations Service</attrdefs>
                <attrdomv>
                    <edom>
                        <edomv>Fredon silt loam, 0 to 3 percent slopes</edomv>
                        <edomvd>Map Unit: 320A—Fredon silt loam, 0 to 3 percent slopes.  Component: Fredon (90%).  The Fredon component makes up 90 percent of the map unit. Slopes are 0 to 3 percent. This component is on depressions on outwash terraces. The parent material consists of stratified glaciofluvial deposits. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is poorly drained. Water movement in the most restrictive layer is moderately high. Available water to a depth of 60 inches (or restricted depth) is moderate. Shrink-swell potential is low. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 6 inches during January, February, March, April, May, October, November, December. Organic matter content in the surface horizon is about 5 percent. This component is in the F139XY011OH Wet Calcareous Depression ecological site. Nonirrigated land capability classification is 4w. This soil meets hydric criteria..  Component: Red Hook (10%)</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Canandaigua mucky silt loam</edomv>
                        <edomvd>Map Unit: 348A—Canandaigua mucky silt loam.  Component: Canandaigua (85%).  The Canandaigua component makes up 85 percent of the map unit. Slopes are 0 to 3 percent. This component is on flats. The parent material consists of silty and clayey glaciolacustrine deposits. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is very poorly drained. Water movement in the most restrictive layer is moderately high. Available water to a depth of 60 inches (or restricted depth) is high. Shrink-swell potential is low. This soil is not flooded. It is frequently ponded. A seasonal zone of water saturation is at 0 inches during January, February, March, April, May, November, December. Organic matter content in the surface horizon is about 10 percent. This component is in the F139XY011OH Wet Calcareous Depression ecological site. Nonirrigated land capability classification is 5w. This soil meets hydric criteria..  Component: Mill (10%).  Component: Carlisle (5%)</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Mardin silt loam, 3 to 8 percent slopes</edomv>
                        <edomvd>Map Unit: 426B—Mardin silt loam, 3 to 8 percent slopes.  Component: Mardin (85%).  The Mardin component makes up 85 percent of the map unit. Slopes are 3 to 8 percent. This component is on drumlinoid ridges, hills. The parent material consists of loamy till derived mainly from acid sedimentary rock. Depth to a root restrictive layer, fragipan, is 16 to 28 inches. The natural drainage class is moderately well drained. Water movement in the most restrictive layer is moderately low. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 20 inches during January, February, March, April, December. Organic matter content in the surface horizon is about 4 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 2w. This soil does not meet hydric criteria..  Component: Venango (10%).  Component: Valois (5%)</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Mardin silt loam, 8 to 15 percent slopes</edomv>
                        <edomvd>Map Unit: 426C—Mardin silt loam, 8 to 15 percent slopes.  Component: Mardin (84%).  The Mardin component makes up 84 percent of the map unit. Slopes are 8 to 15 percent. This component is on drumlinoid ridges, hills. The parent material consists of loamy till derived mainly from acid sedimentary rock. Depth to a root restrictive layer, fragipan, is 16 to 28 inches. The natural drainage class is moderately well drained. Water movement in the most restrictive layer is moderately low. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 20 inches during January, February, March, April, December. Organic matter content in the surface horizon is about 4 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 3e. This soil does not meet hydric criteria..  Component: Valois (8%).  Component: Venango (8%)</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Mardin silt loam, 15 to 25 percent slopes</edomv>
                        <edomvd>Map Unit: 426D—Mardin silt loam, 15 to 25 percent slopes.  Component: Mardin (83%).  The Mardin component makes up 83 percent of the map unit. Slopes are 15 to 25 percent. This component is on drumlinoid ridges, hills. The parent material consists of loamy till derived mainly from acid sedimentary rock. Depth to a root restrictive layer, fragipan, is 16 to 28 inches. The natural drainage class is moderately well drained. Water movement in the most restrictive layer is moderately low. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 20 inches during January, February, March, April, December. Organic matter content in the surface horizon is about 4 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 4e. This soil does not meet hydric criteria..  Component: Valois (12%).  Component: Venango (5%)</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Alden mucky silt loam, 0 to 2 percent slopes</edomv>
                        <edomvd>Map Unit: AaA—Alden mucky silt loam, 0 to 2 percent slopes.  Component: Alden (85%).  The Alden component makes up 85 percent of the map unit. Slopes are 0 to 2 percent. This component is on depressions on ground moraines. The parent material consists of fine-loamy till. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is very poorly drained. Water movement in the most restrictive layer is moderately high. Available water to a depth of 60 inches (or restricted depth) is high. Shrink-swell potential is low. This soil is not flooded. It is frequently ponded. A seasonal zone of water saturation is at 0 inches during January, February, March, April, May, June, October, November, December. Organic matter content in the surface horizon is about 10 percent. This component is in the F139XY011OH Wet Calcareous Depression ecological site. Nonirrigated land capability classification is 4w. This soil meets hydric criteria..  Component: Mill (10%).  Component: Terric Haplosaprists (3%).  Component: Venango (2%)</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Alden silt loam</edomv>
                        <edomvd>Map Unit: Ad—Alden silt loam.  Component: Alden (90%).  The Alden component makes up 90 percent of the map unit. Slopes are 0 to 3 percent. This component is on depressions on till plains. The parent material consists of loamy till. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is very poorly drained. Water movement in the most restrictive layer is moderately low. Available water to a depth of 60 inches (or restricted depth) is moderate. Shrink-swell potential is low. This soil is not flooded. It is frequently ponded. A seasonal zone of water saturation is at 0 inches during January, February, March, April, May, June, November, December. Organic matter content in the surface horizon is about 5 percent. This component is in the F139XY011OH Wet Calcareous Depression ecological site. Nonirrigated land capability classification is 4w. This soil meets hydric criteria. The calcium carbonate equivalent within 40 inches, typically, does not exceed 2 percent..  Component: Frenchtown (4%).  Component: Venango (3%).  Component: Halsey (3%)</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Alvira silt loam, 0 to 3 percent slopes</edomv>
                        <edomvd>Map Unit: AvA—Alvira silt loam, 0 to 3 percent slopes.  Component: Alvira (90%).  The Alvira component makes up 90 percent of the map unit. Slopes are 0 to 3 percent. This component is on ground moraines. The parent material consists of loamy till. Depth to a root restrictive layer, fragipan, is 16 to 28 inches. The natural drainage class is somewhat poorly drained. Water movement in the most restrictive layer is moderately low. Available water to a depth of 60 inches (or restricted depth) is moderate. Shrink-swell potential is low. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 12 inches during January, February, March, April, May, October, November, December. Organic matter content in the surface horizon is about 3 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 3w. This soil does not meet hydric criteria..  Component: Shelmadine (5%).  Component: Hanover (5%)</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Alvira silt loam, 3 to 8 percent slopes</edomv>
                        <edomvd>Map Unit: AvB—Alvira silt loam, 3 to 8 percent slopes.  Component: Alvira (90%).  The Alvira component makes up 90 percent of the map unit. Slopes are 3 to 8 percent. This component is on ground moraines. The parent material consists of loamy till. Depth to a root restrictive layer, fragipan, is 16 to 28 inches. The natural drainage class is somewhat poorly drained. Water movement in the most restrictive layer is moderately low. Available water to a depth of 60 inches (or restricted depth) is moderate. Shrink-swell potential is low. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 12 inches during January, February, March, April, May, October, November, December. Organic matter content in the surface horizon is about 3 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 3w. This soil does not meet hydric criteria..  Component: Shelmadine (5%).  Component: Hanover (5%)</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Aquolls-Eutrudepts complex, frequently flooded</edomv>
                        <edomvd>Map Unit: Ax—Aquolls-Eutrudepts complex, frequently flooded.  Component: Aquolls (55%).  The Aquolls component makes up 55 percent of the map unit. Slopes are 0 to 3 percent. This component is on flood plains. The parent material consists of alluvium with highly variable texture. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is poorly drained. Water movement in the most restrictive layer is moderately high. Available water to a depth of 60 inches (or restricted depth) is moderate. Shrink-swell potential is low. This soil is frequently flooded. It is frequently ponded. A seasonal zone of water saturation is at 0 inches during January, February, March, April, May, June, October, November, December. Organic matter content in the surface horizon is about 7 percent. This component is in the F139XY009OH Wet Floodplain ecological site. Nonirrigated land capability classification is 4w. This soil meets hydric criteria..  Component: Eutrudepts (45%).  The Eutrudepts component makes up 45 percent of the map unit. Slopes are 0 to 3 percent. The parent material consists of alluvium with a wide range of texture. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is moderately well drained. Water movement in the most restrictive layer is moderately high. Available water to a depth of 60 inches (or restricted depth) is very low. Shrink-swell potential is low. This soil is frequently flooded. It is not ponded. A seasonal zone of water saturation is at 48 inches during January, February, March, April, May, November, December. Organic matter content in the surface horizon is about 4 percent. This component is in the F139XY008OH Moist Floodplain ecological site. Nonirrigated land capability classification is 2w. This soil does not meet hydric criteria.</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Bethesda channery silt loam, 8 to 25 percent slopes</edomv>
                        <edomvd>Map Unit: BeD—Bethesda channery silt loam, 8 to 25 percent slopes.  Component: Bethesda, unreclaimed (95%).  The Bethesda, unreclaimed component makes up 95 percent of the map unit. Slopes are 8 to 25 percent. This component is on spoil piles on surface mines, hills. The parent material consists of acid coal extraction mine spoil derived from sandstone and shale. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is well drained. Water movement in the most restrictive layer is low. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is not ponded. There is no zone of water saturation within a depth of 72 inches. Organic matter content in the surface horizon is about 1 percent. This component is in the F139XY004OH Moist Acidic Slopes ecological site. Nonirrigated land capability classification is 4e. This soil does not meet hydric criteria..  Component: Frenchtown (5%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Braceville gravelly loam, 0 to 3 percent slopes</edomv>
                        <edomvd>Map Unit: BrA—Braceville gravelly loam, 0 to 3 percent slopes.  Component: Braceville (95%).  The Braceville component makes up 95 percent of the map unit. Slopes are 0 to 3 percent. This component is on outwash terraces. The parent material consists of coarse-loamy outwash. Depth to a root restrictive layer, fragipan, is 18 to 26 inches. The natural drainage class is moderately well drained. Water movement in the most restrictive layer is moderately low. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 21 inches during January, February, March, November, December. Organic matter content in the surface horizon is about 3 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 2w. This soil does not meet hydric criteria..  Component: Red Hook (1%).  Component: Halsey (1%).  Component: Wyoming (1%).  Component: Scio (1%).  Component: Haven (1%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Braceville gravelly loam, 3 to 8 percent slopes</edomv>
                        <edomvd>Map Unit: BrB—Braceville gravelly loam, 3 to 8 percent slopes.  Component: Braceville (90%).  The Braceville component makes up 90 percent of the map unit. Slopes are 3 to 8 percent. This component is on outwash terraces. The parent material consists of coarse-loamy outwash. Depth to a root restrictive layer, fragipan, is 20 to 32 inches. The natural drainage class is moderately well drained. Water movement in the most restrictive layer is moderately low. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 21 inches during January, February, March, November, December. Organic matter content in the surface horizon is about 3 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 2e. This soil does not meet hydric criteria..  Component: Red Hook (5%).  Component: Rexford (3%).  Component: Canfield (2%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Cambridge silt loam, 0 to 3 percent slopes</edomv>
                        <edomvd>Map Unit: CaA—Cambridge silt loam, 0 to 3 percent slopes.  Component: Cambridge (86%).  The Cambridge component makes up 86 percent of the map unit. Slopes are 0 to 3 percent. This component is on till plains on uplands. The parent material consists of till. Depth to a root restrictive layer, fragipan, is 18 to 30 inches. The natural drainage class is moderately well drained. Water movement in the most restrictive layer is low. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 21 inches during January, February, March, April, November, December. Organic matter content in the surface horizon is about 4 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 2w. This soil does not meet hydric criteria..  Component: Venango (14%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Cambridge silt loam, 3 to 8 percent slopes</edomv>
                        <edomvd>Map Unit: CaB—Cambridge silt loam, 3 to 8 percent slopes.  Component: Cambridge (85%).  The Cambridge component makes up 85 percent of the map unit. Slopes are 3 to 8 percent. This component is on till plains on uplands. The parent material consists of till. Depth to a root restrictive layer, fragipan, is 18 to 30 inches. The natural drainage class is moderately well drained. Water movement in the most restrictive layer is low. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 21 inches during January, February, March, April, November, December. Organic matter content in the surface horizon is about 4 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 2e. This soil does not meet hydric criteria..  Component: Venango (10%).  Component: Valois (5%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Cambridge silt loam, 8 to 15 percent slopes</edomv>
                        <edomvd>Map Unit: CaC—Cambridge silt loam, 8 to 15 percent slopes.  Component: Cambridge (85%).  The Cambridge component makes up 85 percent of the map unit. Slopes are 8 to 15 percent. This component is on till plains on uplands. The parent material consists of till. Depth to a root restrictive layer, fragipan, is 18 to 30 inches. The natural drainage class is moderately well drained. Water movement in the most restrictive layer is low. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 21 inches during January, February, March, April, November, December. Organic matter content in the surface horizon is about 4 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 3e. This soil does not meet hydric criteria..  Component: Venango (8%).  Component: Valois (7%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Cambridge silt loam, 15 to 25 percent slopes</edomv>
                        <edomvd>Map Unit: CaD—Cambridge silt loam, 15 to 25 percent slopes.  Component: Cambridge (85%).  The Cambridge component makes up 85 percent of the map unit. Slopes are 15 to 25 percent. This component is on till plains on uplands. The parent material consists of till. Depth to a root restrictive layer, fragipan, is 18 to 30 inches (depth from the mineral surface is 18 to 28 inches). The natural drainage class is moderately well drained. Water movement in the most restrictive layer is low. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 21 inches (depth from the mineral surface is 19 inches) during January, February, March, April, November, December. Organic matter content in the surface horizon is about 72 percent. Below this thin organic horizon the organic matter content is about 10 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 4e. This soil does not meet hydric criteria..  Component: Valois (10%).  Component: Venango (5%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Cambridge silt loam, 0 to 8 percent slopes, very stony</edomv>
                        <edomvd>Map Unit: CbD—Cambridge silt loam, 8 to 25 percent slopes, very stony.  Component: Cambridge, very stony (85%).  The Cambridge, very stony component makes up 85 percent of the map unit. Slopes are 8 to 25 percent. This component is on till plains on uplands. The parent material consists of till. Depth to a root restrictive layer, fragipan, is 18 to 30 inches (depth from the mineral surface is 18 to 28 inches). The natural drainage class is moderately well drained. Water movement in the most restrictive layer is low. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 21 inches (depth from the mineral surface is 19 inches) during January, February, March, April, November, December. Organic matter content in the surface horizon is about 72 percent. Below this thin organic horizon the organic matter content is about 10 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 6s. This soil does not meet hydric criteria..  Component: Valois (10%).  Component: Venango, very stony (5%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Cambridge silt loam, 8 to 25 percent slopes, very stony</edomv>
                        <edomvd>Map Unit: CbD—Cambridge silt loam, 8 to 25 percent slopes, very stony.  Component: Cambridge, very stony (85%).  The Cambridge, very stony component makes up 85 percent of the map unit. Slopes are 8 to 25 percent. This component is on till plains on uplands. The parent material consists of till. Depth to a root restrictive layer, fragipan, is 18 to 30 inches (depth from the mineral surface is 18 to 28 inches). The natural drainage class is moderately well drained. Water movement in the most restrictive layer is low. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 21 inches (depth from the mineral surface is 19 inches) during January, February, March, April, November, December. Organic matter content in the surface horizon is about 72 percent. Below this thin organic horizon the organic matter content is about 10 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 6s. This soil does not meet hydric criteria..  Component: Valois (10%).  Component: Venango, very stony (5%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Cambridge-Venango silt loams, 3 to 8 percent slopes</edomv>
                        <edomvd>Map Unit: CcB—Cambridge-Venango silt loams, 3 to 8 percent slopes.  Component: Cambridge (50%).  The Cambridge component makes up 50 percent of the map unit. Slopes are 3 to 8 percent. This component is on ground moraines on uplands. The parent material consists of till. Depth to a root restrictive layer, fragipan, is 18 to 30 inches. The natural drainage class is moderately well drained. Water movement in the most restrictive layer is low. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 21 inches during January, February, March, April, November, December. Organic matter content in the surface horizon is about 4 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 2e. This soil does not meet hydric criteria..  Component: Venango (35%).  The Venango component makes up 35 percent of the map unit. Slopes are 3 to 8 percent. This component is on till plains on uplands. The parent material consists of till. Depth to a root restrictive layer, fragipan, is 14 to 28 inches. The natural drainage class is somewhat poorly drained. Water movement in the most restrictive layer is low. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 11 inches during January, February, March, April, May, June, October, November, December. Organic matter content in the surface horizon is about 4 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 3w. This soil does not meet hydric criteria..  Component: Frenchtown (10%).  Component: Valois (5%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Canadice silt loam</edomv>
                        <edomvd>Map Unit: Cd—Canadice silt loam.  Component: Canadice (90%).  The Canadice component makes up 90 percent of the map unit. Slopes are 0 to 3 percent. This component is on lakebeds (relict). The parent material consists of nonacid clayey glaciolacustrine deposits. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is poorly drained. Water movement in the most restrictive layer is low. Available water to a depth of 60 inches (or restricted depth) is high. Shrink-swell potential is moderate. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 2 inches during January, February, March, April, May, June, December. Organic matter content in the surface horizon is about 5 percent. This component is in the F139XY011OH Wet Calcareous Depression ecological site. Nonirrigated land capability classification is 4w. This soil meets hydric criteria..  Component: Red Hook (10%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Caneadea silt loam, 0 to 3 percent slopes</edomv>
                        <edomvd>Map Unit: CeA—Caneadea silt loam, 0 to 3 percent slopes.  Component: Caneadea (90%).  The Caneadea component makes up 90 percent of the map unit. Slopes are 0 to 3 percent. This component is on lakebeds (relict). The parent material consists of clayey glaciolacustrine deposits. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is somewhat poorly drained. Water movement in the most restrictive layer is low. Available water to a depth of 60 inches (or restricted depth) is moderate. Shrink-swell potential is moderate. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 8 inches during January, February, March, April, May, December. Organic matter content in the surface horizon is about 3 percent. This component is in the F139XY002OH Moist Calcareous Till Flats ecological site. Nonirrigated land capability classification is 3w. This soil does not meet hydric criteria..  Component: Canadice (8%).  Component: Red Hook (2%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Caneadea silt loam, 3 to 8 percent slopes</edomv>
                        <edomvd>Map Unit: CeB—Caneadea silt loam, 3 to 8 percent slopes.  Component: Caneadea (94%).  The Caneadea component makes up 94 percent of the map unit. Slopes are 3 to 8 percent. This component is on lakebeds (relict). The parent material consists of clayey glaciolacustrine deposits. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is somewhat poorly drained. Water movement in the most restrictive layer is low. Available water to a depth of 60 inches (or restricted depth) is moderate. Shrink-swell potential is moderate. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 8 inches during January, February, March, April, May, December. Organic matter content in the surface horizon is about 3 percent. This component is in the F139XY002OH Moist Calcareous Till Flats ecological site. Nonirrigated land capability classification is 3w. This soil does not meet hydric criteria..  Component: Venango (1%).  Component: Cambridge (1%).  Component: Braceville (1%).  Component: Canadice (1%).  Component: Red Hook (1%).  Component: Mill (1%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Cut and fill</edomv>
                        <edomvd>Map Unit: CF—Cut and fill.  Component: Udorthents, cut and fill (100%).  The Udorthents, cut and fill component makes up 100 percent of the map unit. Slopes are 0 to 70 percent. This component is on leveled land. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is somewhat excessively drained. Available water to a depth of 60 inches (or restricted depth) is very low. Shrink-swell potential is low. This soil is not flooded. It is not ponded. There is no zone of water saturation within a depth of 72 inches. This soil does not meet hydric criteria..</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Carlisle muck</edomv>
                        <edomvd>Map Unit: CM—Carlisle muck.  Component: Carlisle (95%).  The Carlisle component makes up 95 percent of the map unit. Slopes are 0 to 1 percent. This component is on kettles. The parent material consists of organic material. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is very poorly drained. Water movement in the most restrictive layer is moderately high. Available water to a depth of 60 inches (or restricted depth) is very high. Shrink-swell potential is low. This soil is not flooded. It is frequently ponded. A seasonal zone of water saturation is at 0 inches during January, February, March, April, May, June, September, October, November, December. Organic matter content in the surface horizon is about 85 percent. This component is in the F139XY013OH Mucky Depression ecological site. Nonirrigated land capability classification is 5w. This soil meets hydric criteria..  Component: Terric Haplosaprists (2%).  Component: Holly (1%).  Component: Red Hook (1%).  Component: Halsey (1%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Chenango gravelly silt loam, 0 to 3 percent slopes</edomv>
                        <edomvd>Map Unit: CoA—Chenango gravelly silt loam, 0 to 3 percent slopes.  Component: Chenango (90%).  The Chenango component makes up 90 percent of the map unit. Slopes are 0 to 3 percent. This component is on outwash terraces. The parent material consists of gravelly outwash. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is well drained. Water movement in the most restrictive layer is moderately high. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is not ponded. There is no zone of water saturation within a depth of 72 inches. Organic matter content in the surface horizon is about 4 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 2s. This soil does not meet hydric criteria..  Component: Braceville (6%).  Component: Red Hook (4%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Chenango gravelly silt loam, 3 to 8 percent slopes</edomv>
                        <edomvd>Map Unit: CoB—Chenango gravelly silt loam, 3 to 8 percent slopes.  Component: Chenango (90%).  The Chenango component makes up 90 percent of the map unit. Slopes are 3 to 8 percent. This component is on outwash terraces, plateaus. The parent material consists of gravelly outwash. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is well drained. Water movement in the most restrictive layer is moderately high. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is not ponded. There is no zone of water saturation within a depth of 72 inches. Organic matter content in the surface horizon is about 4 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 2s. This soil does not meet hydric criteria..  Component: Braceville (7%).  Component: Red Hook (3%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Chenango gravelly silt loam, 8 to 15 percent slopes</edomv>
                        <edomvd>Map Unit: CoC—Chenango gravelly silt loam, 8 to 15 percent slopes.  Component: Chenango (90%).  The Chenango component makes up 90 percent of the map unit. Slopes are 8 to 15 percent. This component is on outwash terraces, plateaus. The parent material consists of gravelly outwash. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is well drained. Water movement in the most restrictive layer is moderately high. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is not ponded. There is no zone of water saturation within a depth of 72 inches. Organic matter content in the surface horizon is about 4 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 3e. This soil does not meet hydric criteria..  Component: Braceville (8%).  Component: Red Hook (2%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Chippewa silt loam, 0 to 8 percent slopes</edomv>
                        <edomvd>Map Unit: CpB—Chippewa silt loam, 0 to 8 percent slopes.  Component: Chippewa (90%).  The Chippewa component makes up 90 percent of the map unit. Slopes are 0 to 8 percent. This component is on depressions on ground moraines. The parent material consists of loamy till. Depth to a root restrictive layer, fragipan, is 8 to 20 inches. The natural drainage class is very poorly drained. Water movement in the most restrictive layer is very low. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is occasionally ponded. A seasonal zone of water saturation is at 0 inches during February, March, April, May, September, October, November, December. Organic matter content in the surface horizon is about 4 percent. This component is in the F139XY012OH Wet Acidic Depression ecological site. Nonirrigated land capability classification is 4w. This soil meets hydric criteria..  Component: Venango (5%).  Component: Mardin (5%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Dams</edomv>
                        <edomvd>Map Unit: DAM—Dams.  Component: Dams (100%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Frenchtown silt loam, 0 to 3 percent slopes</edomv>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                        <edomvd>Map Unit: FhA—Frenchtown silt loam, 0 to 3 percent slopes.  Component: Frenchtown (85%).  The Frenchtown component makes up 85 percent of the map unit. Slopes are 0 to 3 percent. This component is on depressions on till plains. The parent material consists of till. Depth to a root restrictive layer, fragipan, is 18 to 38 inches. The natural drainage class is poorly drained. Water movement in the most restrictive layer is low. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is frequently ponded. A seasonal zone of water saturation is at 5 inches during January, February, March, April, May, June, October, November, December. Organic matter content in the surface horizon is about 5 percent. This component is in the F139XY012OH Wet Acidic Depression ecological site. Nonirrigated land capability classification is 4w. This soil meets hydric criteria..  Component: Ravenna (10%).  Component: Alden (5%).</edomvd>
                    </edom>
                    <edom>
                        <edomv>Frenchtown silt loam, 3 to 8 percent slopes</edomv>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                        <edomvd>Map Unit: FhB—Frenchtown silt loam, 3 to 8 percent slopes.  Component: Frenchtown (90%).  The Frenchtown component makes up 90 percent of the map unit. Slopes are 3 to 8 percent. This component is on depressions on till plains. The parent material consists of till. Depth to a root restrictive layer, fragipan, is 18 to 38 inches. The natural drainage class is poorly drained. Water movement in the most restrictive layer is low. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is frequently ponded. A seasonal zone of water saturation is at 5 inches during January, February, March, April, May, June, October, November, December. Organic matter content in the surface horizon is about 5 percent. This component is in the F139XY012OH Wet Acidic Depression ecological site. Nonirrigated land capability classification is 4w. This soil meets hydric criteria..  Component: Ravenna (10%).</edomvd>
                    </edom>
                    <edom>
                        <edomv>Frenchtown silt loam, 0 to 8 percent slopes, very stony</edomv>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                        <edomvd>Map Unit: FvB—Frenchtown silt loam, 0 to 8 percent slopes, very stony.  Component: Frenchtown, very stony (90%).  The Frenchtown, very stony component makes up 90 percent of the map unit. Slopes are 0 to 8 percent. This component is on depressions on till plains. The parent material consists of till. Depth to a root restrictive layer, fragipan, is 18 to 38 inches (depth from the mineral surface is 17 to 36 inches). The natural drainage class is poorly drained. Water movement in the most restrictive layer is low. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is frequently ponded. A seasonal zone of water saturation is at 5 inches (depth from the mineral surface is 3 inches) during January, February, March, April, May, June, October, November, December. Organic matter content in the surface horizon is about 72 percent. Below this thin organic horizon the organic matter content is about 10 percent. This component is in the F139XY012OH Wet Acidic Depression ecological site. Nonirrigated land capability classification is 6s. This soil meets hydric criteria..  Component: Alden, very stony (5%).  Component: Ravenna, very stony (5%).</edomvd>
                    </edom>
                    <edom>
                        <edomv>Gageville silt loam, 18 to 50 percent slopes</edomv>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                        <edomvd>Map Unit: GaF—Gageville silt loam, 18 to 50 percent slopes.  Component: Gageville (95%).  The Gageville component makes up 95 percent of the map unit. Slopes are 18 to 50 percent. This component is on ground moraines. The parent material consists of fine-loamy till. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is moderately well drained. Water movement in the most restrictive layer is moderately high. Available water to a depth of 60 inches (or restricted depth) is high. Shrink-swell potential is moderate. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 22 inches during January, February, March, April, November, December. Organic matter content in the surface horizon is about 4 percent. This component is in the F139XY002OH Moist Calcareous Till Flats ecological site. Nonirrigated land capability classification is 7e. This soil does not meet hydric criteria..  Component: Tyner (5%).</edomvd>
                    </edom>
                    <edom>
                        <edomv>Halsey silt loam</edomv>
                        <edomvd>Map Unit: Ha—Halsey silt loam.  Component: Halsey (90%).  The Halsey component makes up 90 percent of the map unit. Slopes are 0 to 3 percent. This component is on depressions on outwash terraces. The parent material consists of coarse-loamy outwash. Depth to a root restrictive layer, strongly contrasting textural stratification, inches. The natural drainage class is very poorly drained. Water movement in the most restrictive layer is moderately high. Available water to a depth of 60 inches (or restricted depth) is moderate. Shrink-swell potential is low. This soil is not flooded. It is occasionally ponded. A seasonal zone of water saturation is at 0 inches during January, February, March, April, May, June, October, November, December. Organic matter content in the surface horizon is about 5 percent. This component is in the F139XY011OH Wet Calcareous Depression ecological site. Nonirrigated land capability classification is 4w. This soil meets hydric criteria. The calcium carbonate equivalent within 40 inches, typically, does not exceed 2 percent..  Component: Red Hook (5%).  Component: Caneadea (1%).  Component: Braceville (1%).  Component: Canadice (1%).  Component: Frenchtown (1%).  Component: Alden (1%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Hanover silt loam, 0 to 3 percent slopes</edomv>
                        <edomvd>Map Unit: HnA—Hanover silt loam, 0 to 3 percent slopes.  Component: Hanover (90%).  The Hanover component makes up 90 percent of the map unit. Slopes are 0 to 3 percent. This component is on ground moraines. The parent material consists of loamy till. Depth to a root restrictive layer, fragipan, is 17 to 26 inches. The natural drainage class is moderately well drained. Water movement in the most restrictive layer is moderately low. Available water to a depth of 60 inches (or restricted depth) is moderate. Shrink-swell potential is moderate. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 22 inches during January, February, March, April, November, December. Organic matter content in the surface horizon is about 2 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 1. This soil does not meet hydric criteria..  Component: Alvira (8%).  Component: Shelmadine (2%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Hanover silt loam, 3 to 8 percent slopes</edomv>
                        <edomvd>Map Unit: HnB—Hanover silt loam, 3 to 8 percent slopes.  Component: Hanover (90%).  The Hanover component makes up 90 percent of the map unit. Slopes are 3 to 8 percent. This component is on ground moraines. The parent material consists of loamy till. Depth to a root restrictive layer, fragipan, is 17 to 30 inches. The natural drainage class is moderately well drained. Water movement in the most restrictive layer is moderately low. Available water to a depth of 60 inches (or restricted depth) is moderate. Shrink-swell potential is moderate. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 22 inches during January, February, March, April, November, December. Organic matter content in the surface horizon is about 2 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 2e. This soil does not meet hydric criteria..  Component: Alvira (8%).  Component: Shelmadine (2%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Hanover silt loam, 8 to 15 percent slopes</edomv>
                        <edomvd>Map Unit: HnC—Hanover silt loam, 8 to 15 percent slopes.  Component: Hanover (90%).  The Hanover component makes up 90 percent of the map unit. Slopes are 8 to 15 percent. This component is on ground moraines. The parent material consists of loamy till. Depth to a root restrictive layer, fragipan, is 17 to 30 inches. The natural drainage class is moderately well drained. Water movement in the most restrictive layer is moderately low. Available water to a depth of 60 inches (or restricted depth) is moderate. Shrink-swell potential is moderate. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 22 inches during January, February, March, April, November, December. Organic matter content in the surface horizon is about 2 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 3e. This soil does not meet hydric criteria..  Component: Alvira (9%).  Component: Shelmadine (1%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Hanover silt loam, 0 to 8 percent slopes, very stony</edomv>
                        <edomvd>Map Unit: HoB—Hanover silt loam, 0 to 8 percent slopes, very stony.  Component: Hanover (90%).  The Hanover component makes up 90 percent of the map unit. Slopes are 0 to 8 percent. This component is on ground moraines. The parent material consists of loamy till. Depth to a root restrictive layer, fragipan, is 17 to 26 inches. The natural drainage class is moderately well drained. Water movement in the most restrictive layer is moderately low. Available water to a depth of 60 inches (or restricted depth) is moderate. Shrink-swell potential is low. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 22 inches during January, February, March, April, November, December. Organic matter content in the surface horizon is about 2 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 6s. This soil does not meet hydric criteria..  Component: Alvira (8%).  Component: Shelmadine (2%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Hanover silt loam, 8 to 25 percent slopes, very stony</edomv>
                        <edomvd>Map Unit: HoD—Hanover silt loam, 8 to 25 percent slopes, very stony.  Component: Hanover (90%).  The Hanover component makes up 90 percent of the map unit. Slopes are 8 to 25 percent. This component is on ground moraines. The parent material consists of loamy till. Depth to a root restrictive layer, fragipan, is 17 to 26 inches. The natural drainage class is moderately well drained. Water movement in the most restrictive layer is moderately low. Available water to a depth of 60 inches (or restricted depth) is moderate. Shrink-swell potential is low. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 22 inches during January, February, March, April, November, December. Organic matter content in the surface horizon is about 2 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 6s. This soil does not meet hydric criteria..  Component: Alvira (9%).  Component: Shelmadine (1%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Haven silt loam, 0 to 3 percent slopes</edomv>
                        <edomvd>Map Unit: HvA—Haven silt loam, 0 to 3 percent slopes.  Component: Haven (90%).  The Haven component makes up 90 percent of the map unit. Slopes are 0 to 3 percent. This component is on outwash terraces. The parent material consists of coarse-loamy outwash. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is well drained. Water movement in the most restrictive layer is moderately high. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is not ponded. There is no zone of water saturation within a depth of 72 inches. Organic matter content in the surface horizon is about 4 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 1. This soil does not meet hydric criteria..  Component: Braceville (7%).  Component: Chenango (1%).  Component: Red Hook (1%).  Component: Wyoming (1%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Haven silt loam, 3 to 8 percent slopes</edomv>
                        <edomvd>Map Unit: HvB—Haven silt loam, 3 to 8 percent slopes.  Component: Haven (90%).  The Haven component makes up 90 percent of the map unit. Slopes are 3 to 8 percent. This component is on outwash terraces. The parent material consists of coarse-loamy outwash. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is well drained. Water movement in the most restrictive layer is moderately high. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is not ponded. There is no zone of water saturation within a depth of 72 inches. Organic matter content in the surface horizon is about 4 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 2e. This soil does not meet hydric criteria..  Component: Braceville (7%).  Component: Red Hook (1%).  Component: Wyoming (1%).  Component: Chenango (1%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Holly silt loam</edomv>
                        <edomvd>Map Unit: Hy—Holly silt loam.  Component: Holly (90%).  The Holly component makes up 90 percent of the map unit. Slopes are 0 to 3 percent. This component is on depressions on flood plains. The parent material consists of recent loamy alluvium. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is poorly drained. Water movement in the most restrictive layer is moderately high. Available water to a depth of 60 inches (or restricted depth) is high. Shrink-swell potential is low. This soil is frequently flooded. It is not ponded. A seasonal zone of water saturation is at 3 inches during January, February, March, April, May, December. Organic matter content in the surface horizon is about 4 percent. This component is in the F139XY009OH Wet Floodplain ecological site. Nonirrigated land capability classification is 3w. This soil meets hydric criteria..  Component: Lobdell (10%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Holly silty clay loam</edomv>
                        <edomvd>Map Unit: Hz—Holly silty clay loam.  Component: Holly (95%).  The Holly component makes up 95 percent of the map unit. Slopes are 0 to 3 percent. This component is on flood plains. The parent material consists of recent alluvium. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is very poorly drained. Water movement in the most restrictive layer is moderately high. Available water to a depth of 60 inches (or restricted depth) is high. Shrink-swell potential is low. This soil is frequently flooded. It is not ponded. A seasonal zone of water saturation is at 0 inches during January, February, March, April, May, October, November, December. Organic matter content in the surface horizon is about 4 percent. This component is in the F139XY009OH Wet Floodplain ecological site. Nonirrigated land capability classification is 4w. This soil meets hydric criteria..  Component: Carlisle (2%).  Component: Halsey (2%).  Component: Philo (1%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Mardin gravelly silt loam, 8 to 15 percent slopes</edomv>
                        <edomvd>Map Unit: MaC—Mardin gravelly silt loam, 8 to 15 percent slopes.  Component: Mardin (90%).  The Mardin component makes up 90 percent of the map unit. Slopes are 8 to 15 percent. This component is on ground moraines. The parent material consists of loamy till. Depth to a root restrictive layer, fragipan, is 14 to 26 inches. The natural drainage class is moderately well drained. Water movement in the most restrictive layer is low. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 21 inches during March, April, May. Organic matter content in the surface horizon is about 4 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 3e. This soil does not meet hydric criteria..  Component: Chippewa (5%).  Component: Venango (5%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Mill silt loam, 0 to 2 percent slopes</edomv>
                        <edomvd>Map Unit: Mh—Mill silt loam, 0 to 2 percent slopes.  Component: Mill (85%).  The Mill component makes up 85 percent of the map unit. Slopes are 0 to 2 percent. This component is on depressions on till plains. The parent material consists of till. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is poorly drained. Water movement in the most restrictive layer is moderately low. Available water to a depth of 60 inches (or restricted depth) is high. Shrink-swell potential is low. This soil is not flooded. It is frequently ponded. A seasonal zone of water saturation is at 0 inches during January, February, March, April, May, June, October, November, December. Organic matter content in the surface horizon is about 5 percent. This component is in the F139XY011OH Wet Calcareous Depression ecological site. Nonirrigated land capability classification is 4w. This soil meets hydric criteria..  Component: Platea (10%).  Component: Alden (5%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Otego silt loam</edomv>
                        <edomvd>Map Unit: Ot—Otego silt loam.  Component: Otego (85%).  The Otego component makes up 85 percent of the map unit. Slopes are 0 to 2 percent. This component is on flood plains. The parent material consists of coarse-silty alluvium. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is moderately well drained. Water movement in the most restrictive layer is moderately high. Available water to a depth of 60 inches (or restricted depth) is high. Shrink-swell potential is low. This soil is frequently flooded. It is not ponded. A seasonal zone of water saturation is at 18 inches during January, February, March, April, November, December. Organic matter content in the surface horizon is about 4 percent. This component is in the F139XY008OH Moist Floodplain ecological site. Nonirrigated land capability classification is 2w. This soil does not meet hydric criteria..  Component: Wakeville (10%).  Component: Wick (5%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Pierpont silt loam, 2 to 6 percent slopes</edomv>
                        <edomvd>Map Unit: PeB—Pierpont silt loam, 2 to 6 percent slopes.  Component: Pierpont (86%).  The Pierpont component makes up 86 percent of the map unit. Slopes are 2 to 6 percent. This component is on till plains on uplands. The parent material consists of till. Depth to a root restrictive layer, fragipan, is 18 to 30 inches. The natural drainage class is moderately well drained. Water movement in the most restrictive layer is low. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 13 inches during January, February, March, April, November, December. Organic matter content in the surface horizon is about 4 percent. This component is in the F139XY004OH Moist Acidic Slopes ecological site. Nonirrigated land capability classification is 2e. This soil does not meet hydric criteria..  Component: Platea (14%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Pierpont silt loam, 6 to 12 percent slopes</edomv>
                        <edomvd>Map Unit: PeC—Pierpont silt loam, 6 to 12 percent slopes.  Component: Pierpont (86%).  The Pierpont component makes up 86 percent of the map unit. Slopes are 6 to 12 percent. This component is on till plains on uplands. The parent material consists of till. Depth to a root restrictive layer, fragipan, is 18 to 30 inches. The natural drainage class is moderately well drained. Water movement in the most restrictive layer is low. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 13 inches during January, February, March, April, November, December. Organic matter content in the surface horizon is about 4 percent. This component is in the F139XY004OH Moist Acidic Slopes ecological site. Nonirrigated land capability classification is 3e. This soil does not meet hydric criteria..  Component: Platea (14%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Pierpont silt loam, 12 to 18 percent slopes</edomv>
                        <edomvd>Map Unit: PeD—Pierpont silt loam, 12 to 18 percent slopes.  Component: Pierpont (85%).  The Pierpont component makes up 85 percent of the map unit. Slopes are 12 to 18 percent. This component is on till plains on uplands. The parent material consists of till. Depth to a root restrictive layer, fragipan, is 18 to 30 inches (depth from the mineral surface is 18 to 28 inches). The natural drainage class is moderately well drained. Water movement in the most restrictive layer is low. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 13 inches (depth from the mineral surface is 11 inches) during January, February, March, April, November, December. Organic matter content in the surface horizon is about 72 percent. Below this thin organic horizon the organic matter content is about 9 percent. This component is in the F139XY004OH Moist Acidic Slopes ecological site. Nonirrigated land capability classification is 4e. This soil does not meet hydric criteria..  Component: Gageville (5%).  Component: Chenango (5%).  Component: Platea (5%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Philo silt loam</edomv>
                        <edomvd>Map Unit: Ph—Philo silt loam.  Component: Philo (90%).  The Philo component makes up 90 percent of the map unit. Slopes are 0 to 2 percent. This component is on flood plains. The parent material consists of recent coarse-loamy alluvium derived from sandstone and shale. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is moderately well drained. Water movement in the most restrictive layer is moderately high. Available water to a depth of 60 inches (or restricted depth) is moderate. Shrink-swell potential is low. This soil is occasionally flooded. It is not ponded. A seasonal zone of water saturation is at 21 inches during January, February, March, April, December. Organic matter content in the surface horizon is about 3 percent. This component is in the F139XY008OH Moist Floodplain ecological site. Nonirrigated land capability classification is 2w. This soil does not meet hydric criteria..  Component: Atkins (10%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Platea silt loam, 0 to 2 percent slopes</edomv>
                        <edomvd>Map Unit: PlA—Platea silt loam, 0 to 2 percent slopes.  Component: Platea (85%).  The Platea component makes up 85 percent of the map unit. Slopes are 0 to 2 percent. This component is on end moraines. The parent material consists of loamy till. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is somewhat poorly drained. Water movement in the most restrictive layer is low. Available water to a depth of 60 inches (or restricted depth) is moderate. Shrink-swell potential is low. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 6 inches during January, February, March, April, May, June, October, November, December. Organic matter content in the surface horizon is about 6 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 3w. This soil does not meet hydric criteria..  Component: Mill (10%).  Component: Pierpont (5%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Platea silt loam, 2 to 6 percent slopes</edomv>
                        <edomvd>Map Unit: PlB—Platea silt loam, 2 to 6 percent slopes.  Component: Platea (87%).  The Platea component makes up 87 percent of the map unit. Slopes are 2 to 6 percent. This component is on end moraines. The parent material consists of loamy till. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is somewhat poorly drained. Water movement in the most restrictive layer is low. Available water to a depth of 60 inches (or restricted depth) is moderate. Shrink-swell potential is low. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 6 inches during January, February, March, April, May, June, October, November, December. Organic matter content in the surface horizon is about 6 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 3w. This soil does not meet hydric criteria..  Component: Pierpont (8%).  Component: Mill (5%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Platea silt loam, 6 to 12 percent slopes</edomv>
                        <edomvd>Map Unit: PlC—Platea silt loam, 6 to 12 percent slopes.  Component: Platea (85%).  The Platea component makes up 85 percent of the map unit. Slopes are 6 to 12 percent. This component is on end moraines. The parent material consists of loamy till. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is somewhat poorly drained. Water movement in the most restrictive layer is low. Available water to a depth of 60 inches (or restricted depth) is moderate. Shrink-swell potential is low. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 6 inches during January, February, March, April, May, June, October, November, December. Organic matter content in the surface horizon is about 6 percent. This component is in the F139XY004OH Moist Acidic Slopes ecological site. Nonirrigated land capability classification is 3w. This soil does not meet hydric criteria..  Component: Pierpont (12%).  Component: Mill (3%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Pope loam</edomv>
                        <edomvd>Map Unit: Po—Pope loam.  Component: Pope (90%).  The Pope component makes up 90 percent of the map unit. Slopes are 0 to 3 percent. This component is on flood plains. The parent material consists of recent alluvium. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is well drained. Water movement in the most restrictive layer is moderately high. Available water to a depth of 60 inches (or restricted depth) is moderate. Shrink-swell potential is low. This soil is frequently flooded. It is not ponded. There is no zone of water saturation within a depth of 72 inches. Organic matter content in the surface horizon is about 3 percent. This component is in the F139XY008OH Moist Floodplain ecological site. Nonirrigated land capability classification is 2w. This soil does not meet hydric criteria..  Component: Holly (5%).  Component: Philo (3%).  Component: Haven (2%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Quarries</edomv>
                        <edomvd>Map Unit: QU—Quarries.  Component: Pits, quarry (100%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Red Hook loam</edomv>
                        <edomvd>Map Unit: Rh—Red Hook loam.  Component: Red Hook (90%).  The Red Hook component makes up 90 percent of the map unit. Slopes are 0 to 5 percent. This component is on outwash terraces. The parent material consists of coarse-loamy outwash. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is somewhat poorly drained. Water movement in the most restrictive layer is moderately high. Available water to a depth of 60 inches (or restricted depth) is moderate. Shrink-swell potential is low. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 12 inches during January, February, March, April, May, December. Organic matter content in the surface horizon is about 3 percent. This component is in the F139XY002OH Moist Calcareous Till Flats ecological site. Nonirrigated land capability classification is 3w. This soil does not meet hydric criteria..  Component: Halsey (5%).  Component: Carlisle (1%).  Component: Braceville (1%).  Component: Chenango (1%).  Component: Wyoming (1%).  Component: Caneadea (1%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Scio silt loam, 0 to 3 percent slopes</edomv>
                        <edomvd>Map Unit: ScA—Scio silt loam, 0 to 3 percent slopes.  Component: Scio (96%).  The Scio component makes up 96 percent of the map unit. Slopes are 0 to 3 percent. This component is on outwash terraces. The parent material consists of old coarse-silty alluvium. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is moderately well drained. Water movement in the most restrictive layer is moderately high. Available water to a depth of 60 inches (or restricted depth) is high. Shrink-swell potential is low. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 21 inches during March, April, May. Organic matter content in the surface horizon is about 3 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 2w. This soil does not meet hydric criteria..  Component: Braceville (1%).  Component: Haven (1%).  Component: Red Hook (1%).  Component: Halsey (1%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Scio silt loam, 3 to 8 percent slopes</edomv>
                        <edomvd>Map Unit: ScB—Scio silt loam, 3 to 8 percent slopes.  Component: Scio (96%).  The Scio component makes up 96 percent of the map unit. Slopes are 3 to 8 percent. This component is on outwash terraces. The parent material consists of old coarse-silty alluvium. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is moderately well drained. Water movement in the most restrictive layer is moderately high. Available water to a depth of 60 inches (or restricted depth) is high. Shrink-swell potential is low. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 21 inches during March, April, May. Organic matter content in the surface horizon is about 4 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 2e. This soil does not meet hydric criteria..  Component: Halsey (1%).  Component: Haven (1%).  Component: Red Hook (1%).  Component: Braceville (1%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Shelmadine silt loam, 0 to 3 percent slopes</edomv>
                        <edomvd>Map Unit: SmA—Shelmadine silt loam, 0 to 3 percent slopes.  Component: Shelmadine (95%).  The Shelmadine component makes up 95 percent of the map unit. Slopes are 0 to 3 percent. This component is on depressions on ground moraines. The parent material consists of loamy till. Depth to a root restrictive layer, fragipan, is 20 to 30 inches. The natural drainage class is poorly drained. Water movement in the most restrictive layer is moderately low. Available water to a depth of 60 inches (or restricted depth) is moderate. Shrink-swell potential is low. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 3 inches during January, February, March, April, May, June, September, October, November, December. Organic matter content in the surface horizon is about 3 percent. This component is in the F139XY012OH Wet Acidic Depression ecological site. Nonirrigated land capability classification is 4w. This soil meets hydric criteria..  Component: Alvira (5%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Shelmadine silt loam, 3 to 8 percent slopes</edomv>
                        <edomvd>Map Unit: SmB—Shelmadine silt loam, 3 to 8 percent slopes.  Component: Shelmadine (95%).  The Shelmadine component makes up 95 percent of the map unit. Slopes are 3 to 8 percent. This component is on depressions on ground moraines. The parent material consists of loamy till. Depth to a root restrictive layer, fragipan, is 20 to 30 inches. The natural drainage class is poorly drained. Water movement in the most restrictive layer is moderately low. Available water to a depth of 60 inches (or restricted depth) is moderate. Shrink-swell potential is low. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 3 inches during January, February, March, April, May, June, September, October, November, December. Organic matter content in the surface horizon is about 3 percent. This component is in the F139XY012OH Wet Acidic Depression ecological site. Nonirrigated land capability classification is 4w. This soil meets hydric criteria..  Component: Alvira (5%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Stanhope silt loam</edomv>
                        <edomvd>Map Unit: St—Stanhope silt loam.  Component: Stanhope (95%).  The Stanhope component makes up 95 percent of the map unit. Slopes are 0 to 2 percent. This component is on flood plains. The parent material consists of fine-silty alluvium. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is poorly drained. Water movement in the most restrictive layer is moderately high. Available water to a depth of 60 inches (or restricted depth) is very high. Shrink-swell potential is moderate. This soil is frequently flooded. It is not ponded. A seasonal zone of water saturation is at 5 inches during January, February, March, April, May, June, October, November, December. Organic matter content in the surface horizon is about 5 percent. This component is in the F139XY009OH Wet Floodplain ecological site. Nonirrigated land capability classification is 3w. This soil meets hydric criteria..  Component: Otego (5%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Valois gravelly silt loam, 3 to 8 percent slopes</edomv>
                        <edomvd>Map Unit: VaB—Valois gravelly silt loam, 3 to 8 percent slopes.  Component: Valois (95%).  The Valois component makes up 95 percent of the map unit. Slopes are 3 to 8 percent. This component is on end moraines. The parent material consists of loamy till. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is well drained. Water movement in the most restrictive layer is moderately high. Available water to a depth of 60 inches (or restricted depth) is moderate. Shrink-swell potential is low. This soil is not flooded. It is not ponded. There is no zone of water saturation within a depth of 72 inches. Organic matter content in the surface horizon is about 4 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 2e. This soil does not meet hydric criteria..  Component: Frenchtown (1%).  Component: Wyoming (1%).  Component: Cambridge (1%).  Component: Chenango (1%).  Component: Venango (1%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Valois gravelly silt loam, 8 to 15 percent slopes</edomv>
                        <edomvd>Map Unit: VaC—Valois gravelly silt loam, 8 to 15 percent slopes.  Component: Valois (90%).  The Valois component makes up 90 percent of the map unit. Slopes are 8 to 15 percent. This component is on end moraines. The parent material consists of loamy till. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is well drained. Water movement in the most restrictive layer is moderately high. Available water to a depth of 60 inches (or restricted depth) is moderate. Shrink-swell potential is low. This soil is not flooded. It is not ponded. There is no zone of water saturation within a depth of 72 inches. Organic matter content in the surface horizon is about 4 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 3e. This soil does not meet hydric criteria..  Component: Cambridge (5%).  Component: Venango (3%).  Component: Chenango (2%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Valois gravelly silt loam, 15 to 25 percent slopes</edomv>
                        <edomvd>Map Unit: VaD—Valois gravelly silt loam, 15 to 25 percent slopes.  Component: Valois (95%).  The Valois component makes up 95 percent of the map unit. Slopes are 15 to 25 percent. This component is on end moraines. The parent material consists of loamy till. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is well drained. Water movement in the most restrictive layer is moderately high. Available water to a depth of 60 inches (or restricted depth) is moderate. Shrink-swell potential is low. This soil is not flooded. It is not ponded. There is no zone of water saturation within a depth of 72 inches. Organic matter content in the surface horizon is about 4 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 4e. This soil does not meet hydric criteria..  Component: Cambridge (5%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Valois soils, very steep</edomv>
                        <edomvd>Map Unit: VLF—Valois soils, very steep.  Component: Valois (95%).  The Valois component makes up 95 percent of the map unit. Slopes are 25 to 50 percent. This component is on end moraines. The parent material consists of loamy till. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is well drained. Water movement in the most restrictive layer is moderately high. Available water to a depth of 60 inches (or restricted depth) is moderate. Shrink-swell potential is low. This soil is not flooded. It is not ponded. There is no zone of water saturation within a depth of 72 inches. Organic matter content in the surface horizon is about 4 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 7s. This soil does not meet hydric criteria..  Component: Chenango (3%).  Component: Wyoming (2%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Valois-Cambridge complex, 3 to 8 percent slopes</edomv>
                        <edomvd>Map Unit: VmB—Valois-Cambridge complex, 3 to 8 percent slopes.  Component: Valois (60%).  The Valois component makes up 60 percent of the map unit. Slopes are 3 to 8 percent. This component is on till plains on uplands. The parent material consists of loamy till derived mainly from sandstone, siltstone, and shale. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is well drained. Water movement in the most restrictive layer is moderately high. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is not ponded. There is no zone of water saturation within a depth of 72 inches. Organic matter content in the surface horizon is about 4 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 2e. This soil does not meet hydric criteria..  Component: Cambridge (35%).  The Cambridge component makes up 35 percent of the map unit. Slopes are 3 to 8 percent. This component is on till plains on uplands. The parent material consists of till. Depth to a root restrictive layer, fragipan, is 18 to 30 inches. The natural drainage class is moderately well drained. Water movement in the most restrictive layer is low. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 21 inches during January, February, March, April, November, December. Organic matter content in the surface horizon is about 4 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 2e. This soil does not meet hydric criteria..  Component: Venango (5%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Valois-Cambridge complex, 8 to 15 percent slopes</edomv>
                        <edomvd>Map Unit: VmC—Valois-Cambridge complex, 8 to 15 percent slopes.  Component: Valois (60%).  The Valois component makes up 60 percent of the map unit. Slopes are 8 to 15 percent. This component is on till plains on uplands. The parent material consists of loamy till derived mainly from sandstone, siltstone, and shale. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is well drained. Water movement in the most restrictive layer is moderately high. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is not ponded. There is no zone of water saturation within a depth of 72 inches. Organic matter content in the surface horizon is about 4 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 3e. This soil does not meet hydric criteria..  Component: Cambridge (35%).  The Cambridge component makes up 35 percent of the map unit. Slopes are 8 to 15 percent. This component is on till plains on uplands. The parent material consists of till. Depth to a root restrictive layer, fragipan, is 18 to 30 inches. The natural drainage class is moderately well drained. Water movement in the most restrictive layer is low. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 21 inches during January, February, March, April, November, December. Organic matter content in the surface horizon is about 4 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 3e. This soil does not meet hydric criteria..  Component: Venango (5%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Venango silt loam, 0 to 3 percent slopes</edomv>
                        <edomvd>Map Unit: VnA—Venango silt loam, 0 to 3 percent slopes.  Component: Venango (85%).  The Venango component makes up 85 percent of the map unit. Slopes are 0 to 3 percent. This component is on till plains on uplands. The parent material consists of till. Depth to a root restrictive layer, fragipan, is 14 to 28 inches. The natural drainage class is somewhat poorly drained. Water movement in the most restrictive layer is low. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 11 inches during January, February, March, April, May, June, October, November, December. Organic matter content in the surface horizon is about 4 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 3w. This soil does not meet hydric criteria..  Component: Mill (10%).  Component: Cambridge (5%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Venango silt loam, 3 to 8 percent slopes</edomv>
                        <edomvd>Map Unit: VnB—Venango silt loam, 3 to 8 percent slopes.  Component: Venango (90%).  The Venango component makes up 90 percent of the map unit. Slopes are 3 to 8 percent. This component is on till plains on uplands. The parent material consists of till. Depth to a root restrictive layer, fragipan, is 14 to 28 inches. The natural drainage class is somewhat poorly drained. Water movement in the most restrictive layer is low. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 11 inches during January, February, March, April, May, June, October, November, December. Organic matter content in the surface horizon is about 4 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 3w. This soil does not meet hydric criteria..  Component: Cambridge (5%).  Component: Mill (5%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Venango silt loam, 8 to 15 percent slopes</edomv>
                        <edomvd>Map Unit: VnC—Venango silt loam, 8 to 15 percent slopes.  Component: Venango (85%).  The Venango component makes up 85 percent of the map unit. Slopes are 8 to 15 percent. This component is on till plains on uplands. The parent material consists of till. Depth to a root restrictive layer, fragipan, is 14 to 28 inches. The natural drainage class is somewhat poorly drained. Water movement in the most restrictive layer is low. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 11 inches during January, February, March, April, May, June, October, November, December. Organic matter content in the surface horizon is about 4 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 3e. This soil does not meet hydric criteria..  Component: Cambridge (10%).  Component: Mill (5%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Venango silt loam, 0 to 8 percent slopes, very stony</edomv>
                        <edomvd>Map Unit: VoB—Venango silt loam, 0 to 8 percent slopes, very stony.  Component: Venango, very stony (85%).  The Venango, very stony component makes up 85 percent of the map unit. Slopes are 0 to 8 percent. This component is on till plains on uplands. The parent material consists of till. Depth to a root restrictive layer, fragipan, is 14 to 28 inches (depth from the mineral surface is 13 to 26 inches). The natural drainage class is somewhat poorly drained. Water movement in the most restrictive layer is low. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 11 inches (depth from the mineral surface is 9 inches) during January, February, March, April, May, June, October, November, December. Organic matter content in the surface horizon is about 72 percent. Below this thin organic horizon the organic matter content is about 10 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 6s. This soil does not meet hydric criteria..  Component: Mill (10%).  Component: Cambridge, very stony (5%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Venango silt loam, 8 to 15 percent slopes, very stony</edomv>
                        <edomvd>Map Unit: VoC—Venango silt loam, 8 to 15 percent slopes, very stony.  Component: Venango, very stony (85%).  The Venango, very stony component makes up 85 percent of the map unit. Slopes are 8 to 15 percent. This component is on till plains on uplands. The parent material consists of till. Depth to a root restrictive layer, fragipan, is 14 to 28 inches (depth from the mineral surface is 13 to 26 inches). The natural drainage class is somewhat poorly drained. Water movement in the most restrictive layer is low. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is not ponded. A seasonal zone of water saturation is at 11 inches (depth from the mineral surface is 9 inches) during January, February, March, April, May, June, October, November, December. Organic matter content in the surface horizon is about 72 percent. Below this thin organic horizon the organic matter content is about 10 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 6s. This soil does not meet hydric criteria..  Component: Cambridge, very stony (10%).  Component: Mill (5%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Water, census and small</edomv>
                        <edomvd>Map Unit: W—Water, census and small.  Component: Water (100%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Wick silt loam</edomv>
                        <edomvd>Map Unit: Wc—Wick silt loam.  Component: Wick (93%).  The Wick component makes up 93 percent of the map unit. Slopes are 0 to 1 percent. This component is on flood plains. The parent material consists of fine-silty alluvium. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is very poorly drained. Water movement in the most restrictive layer is moderately high. Available water to a depth of 60 inches (or restricted depth) is high. Shrink-swell potential is low. This soil is frequently flooded. It is not ponded. A seasonal zone of water saturation is at 0 inches during January, February, March, April, May, June, July, August, September, October, November, December. Organic matter content in the surface horizon is about 7 percent. This component is in the F139XY009OH Wet Floodplain ecological site. Nonirrigated land capability classification is 4w. This soil meets hydric criteria..  Component: Wakeville (5%).  Component: Carlisle (2%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Wyoming gravelly sandy loam, 0 to 3 percent slopes</edomv>
                        <edomvd>Map Unit: WyA—Wyoming gravelly sandy loam, 0 to 3 percent slopes.  Component: Wyoming (95%).  The Wyoming component makes up 95 percent of the map unit. Slopes are 0 to 3 percent. This component is on outwash terraces. The parent material consists of gravelly outwash. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is somewhat excessively drained. Water movement in the most restrictive layer is high. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is not ponded. There is no zone of water saturation within a depth of 72 inches. Organic matter content in the surface horizon is about 2 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 3s. This soil does not meet hydric criteria..  Component: Braceville (2%).  Component: Haven (1%).  Component: Red Hook (1%).  Component: Chenango (1%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Wyoming gravelly sandy loam, 3 to 8 percent</edomv>
                        <edomvd>Map Unit: WyB—Wyoming gravelly sandy loam, 3 to 8 percent.  Component: Wyoming (98%).  The Wyoming component makes up 98 percent of the map unit. Slopes are 3 to 8 percent. This component is on outwash terraces. The parent material consists of gravelly outwash. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is somewhat excessively drained. Water movement in the most restrictive layer is high. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is not ponded. There is no zone of water saturation within a depth of 72 inches. Organic matter content in the surface horizon is about 2 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 3s. This soil does not meet hydric criteria..  Component: Haven (1%).  Component: Chenango (1%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Wyoming gravelly sandy loam, 8 to 15 percent slopes</edomv>
                        <edomvd>Map Unit: WyC—Wyoming gravelly sandy loam, 8 to 15 percent slopes.  Component: Wyoming (98%).  The Wyoming component makes up 98 percent of the map unit. Slopes are 8 to 15 percent. This component is on outwash terraces. The parent material consists of gravelly outwash. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is somewhat excessively drained. Water movement in the most restrictive layer is high. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is not ponded. There is no zone of water saturation within a depth of 72 inches. Organic matter content in the surface horizon is about 2 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 4s. This soil does not meet hydric criteria..  Component: Haven (1%).  Component: Chenango (1%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Wyoming gravelly sandy loam, 15 to 25 percent slopes</edomv>
                        <edomvd>Map Unit: WyD—Wyoming gravelly sandy loam, 15 to 25 percent slopes.  Component: Wyoming (98%).  The Wyoming component makes up 98 percent of the map unit. Slopes are 15 to 25 percent. This component is on outwash terraces. The parent material consists of gravelly outwash. Depth to a root restrictive layer is greater than 60 inches. The natural drainage class is somewhat excessively drained. Water movement in the most restrictive layer is high. Available water to a depth of 60 inches (or restricted depth) is low. Shrink-swell potential is low. This soil is not flooded. It is not ponded. There is no zone of water saturation within a depth of 72 inches. Organic matter content in the surface horizon is about 2 percent. This component is in the F139XY006OH Moist Till Highlands ecological site. Nonirrigated land capability classification is 4e. This soil does not meet hydric criteria..  Component: Valois (1%).  Component: Chenango (1%).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                </attrdomv>
                <attrtype>String</attrtype>
                <attwidth>255</attwidth>
                <attalias>Map Unit Name</attalias>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
            </attr>
            <attr>
                <attrlabl>FARMLAND_CLASSIFICATION</attrlabl>
                <attrdef>In an effort to identify the extent and location of important farmlands, the Natural Resources Conservation Service, in cooperation with other interested Federal, State, and local government organizations, has inventoried land that can be used for the production of the Nation's food supply.

Prime farmland is of major importance in meeting the Nation's short- and long-range needs for food and fiber. Because the supply of high-quality farmland is limited, the U.S. Department of Agriculture recognizes that responsible levels of government, as well as individuals, should encourage and facilitate the wise use of our Nation's prime farmland.

A recent trend in land use in some areas has been the loss of some prime farmland to industrial and urban uses. The loss of prime farmland to other uses puts pressure on marginal lands, which generally are more erodible, droughty, and less productive and cannot be easily cultivated.


</attrdef>
                <attrdefs>United States Department of Agriculture - Natural Resources Conservations Service</attrdefs>
                <attrdomv>
                    <edom>
                        <edomv>All areas are prime farmland</edomv>
                        <edomvd>Prime farmland, as defined by the U.S. Department of Agriculture, is land that has the best combination of physical and chemical characteristics for producing food, feed, forage, fiber, and oilseed crops and is available for these uses. It could be cultivated land, pastureland, forestland, or other land, but it is not urban or built-up land or water areas. The soil quality, growing season, and moisture supply are those needed for the soil to economically produce sustained high yields of crops when proper management, including water management, and acceptable farming methods are applied. In general, prime farmland has an adequate and dependable supply of moisture from precipitation or irrigation, a favorable temperature and growing season, acceptable acidity or alkalinity, an acceptable salt and sodium content, and few or no rocks. The water supply is dependable and of adequate quality. Prime farmland is permeable to water and air. It is not excessively erodible or saturated with water for long periods, and it either is not frequently flooded during the growing season or is protected from flooding. Slope ranges mainly from 0 to 6 percent. More detailed information about the criteria for prime farmland is available at the local office of the Natural Resources Conservation Service.  For some of the soils identified in the table as prime farmland, measures that overcome a hazard or limitation, such as flooding, wetness, and droughtiness, are needed. Onsite evaluation is needed to determine whether or not the hazard or limitation has been overcome by corrective measures.</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Farmland of statewide importance</edomv>
                        <edomvd>In some areas, land that does not meet the criteria for prime or unique farmland is considered to be farmland of statewide importance for the production of food, feed, fiber, forage, and oilseed crops. The criteria for defining and delineating farmland of statewide importance are determined by the appropriate State agencies. Generally, this land includes areas of soils that nearly meet the requirements for prime farmland and that economically produce high yields of crops when treated and managed according to acceptable farming methods. Some areas may produce as high a yield as prime farmland if conditions are favorable. Farmland of statewide importance may include tracts of land that have been designated for agriculture by State law.</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Not prime farmland</edomv>
                        <edomvd>In some areas that are not identified as having national or statewide importance, land is considered to be farmland of local importance for the production of food, feed, fiber, forage, and oilseed crops. This farmland is identified by the appropriate local agencies. Farmland of local importance may include tracts of land that have been designated for agriculture by local ordinance.</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Unique farmland</edomv>
                        <edomvd>Unique farmland is land other than prime farmland that is used for the production of specific high-value food and fiber crops, such as citrus, tree nuts, olives, cranberries, and other fruits and vegetables. It has the special combination of soil quality, growing season, moisture supply, temperature, humidity, air drainage, elevation, and aspect needed for the soil to economically produce sustainable high yields of these crops when properly managed. The water supply is dependable and of adequate quality. Nearness to markets is an additional consideration. Unique farmland is not based on national criteria. It commonly is in areas where there is a special microclimate, such as the wine country in California.</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                </attrdomv>
                <attrtype>String</attrtype>
                <attwidth>255</attwidth>
                <attalias>Farmland Classification</attalias>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
            </attr>
            <attr>
                <attrlabl>SLIPPAGE_POTENTIAL_RATING</attrlabl>
                <attrdef>"Soil slippage potential” is the hazard that a mass of soil will slip when vegetation is removed, soil water is at or near saturation, and other normal practices are applied.  Conditions that increase the hazard of slippage but are not considered in this rating are undercutting lower portions or loading the upper parts of a slope or altering the drainage or offsite water contribution to the site, such as through irrigation. The publication “Landslides Investigation and Mitigation Special Report 247” (Transportation Research Board, National Research Council, 1996) provides additional information on landscape slippage

Slippage is an important consideration for engineering practices, such as constructing roads and buildings, and for forestry practices.

Soil slippage potential classes are estimated by observing slope; lithology, including contrasting lithologies; strike and dip; surface drainage patterns; and occurrences of such features as slip scars and slumps.

The map unit components listed for each map unit in the accompanying Summary by Map Unit table in Web Soil Survey or the Aggregation Report in Soil Data Viewer are determined by the aggregation method chosen. An aggregated rating class is shown for each map unit. The components listed for each map unit are only those that have the same rating class as listed for the map unit. The percent composition of each component in a particular map unit is presented to help the user better understand the percentage of each map unit that has the rating presented.

Other components with different ratings may be present in each map unit. The ratings for all components, regardless of the map unit aggregated rating, can be viewed by generating the equivalent report from the Soil Reports tab in Web Soil Survey. Onsite investigation may be needed to validate these interpretations and to confirm the identity of the soil on a given site.

Rating Options — Soil Slippage Potential
Aggregation Method: Dominant Condition
Component Percent Cutoff: None Specified
Tie-break Rule: Higher

Use part 618, subpart B, section 618.96, “Key Landforms and Their Susceptibility to Slippage,” as a guide for rating the hazard of slippage - direct link - https://directives.sc.egov.usda.gov/OpenNonWebContent.aspx?content=44089.wba. </attrdef>
                <attrdefs>United States Department of Agriculture - Natural Resources Conservations Service</attrdefs>
                <attrdomv>
                    <edom>
                        <edomv>High</edomv>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                        <edomvd>Unstable</edomvd>
                    </edom>
                    <edom>
                        <edomv>Medium</edomv>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                        <edomvd>Moderately unstable</edomvd>
                    </edom>
                    <edom>
                        <edomv>Low</edomv>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                        <edomvd>Slightly unstable to stable</edomvd>
                    </edom>
                    <edom>
                        <edomv>No Rank</edomv>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                        <edomvd>Stable</edomvd>
                    </edom>
                </attrdomv>
                <attrtype>String</attrtype>
                <attwidth>255</attwidth>
                <attalias>Soil Slippage Potential Rating</attalias>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
            </attr>
            <attr>
                <attrlabl>APPROX_DEPTH_TO_WATERTABLE_CM</attrlabl>
                <attrdef>"Water table" refers to a saturated zone in the soil. It occurs during specified months. Estimates of the upper limit are based mainly on observations of the water table at selected sites and on evidence of a saturated zone, namely grayish colors (redoximorphic features) in the soil. A saturated zone that lasts for less than a month is not considered a water table.

This attribute is actually recorded as three separate values in the database.  A low value and a high value indicate the range of this attribute for the soil component.  A "representative" value indicates the expected value of this attribute for the component.  For this soil property, only the representative value is used.

Rating Options — Depth to Water Table
Units of Measure: centimeters
Aggregation Method: Dominant Component
Component Percent Cutoff: None Specified
Tie-break Rule: Lower
Interpret Nulls as Zero: No
Beginning Month: January
Ending Month: December</attrdef>
                <attrdefs>United States Department of Agriculture - Natural Resources Conservations Service</attrdefs>
                <attrdomv>
                    <udom>Values are variable. </udom>
                </attrdomv>
                <attrtype>Double</attrtype>
                <attwidth>8</attwidth>
                <attalias>Approximate Depth to Watertable in Centimeters</attalias>
                <atprecis Sync="TRUE">38</atprecis>
                <attscale Sync="TRUE">8</attscale>
            </attr>
            <attr>
                <attrlabl>REPRESENTATIVE_SLOPE_PERCENT</attrlabl>
                <attrdef>Slope gradient is the difference in elevation between two points, expressed as a percentage of the distance between those points.

The slope gradient is actually recorded as three separate values in the database.  A low value and a high value indicate the range of this attribute for the soil component.  A "representative" value indicates the expected value of this attribute for the component.  For this soil property, only the representative value is used.
</attrdef>
                <attrdefs>United States Department of Agriculture - Natural Resources Conservations Service</attrdefs>
                <attrdomv>
                    <udom>Values are variable. </udom>
                </attrdomv>
                <attrtype>Double</attrtype>
                <attwidth>8</attwidth>
                <attalias>Representative Slope (Percent)</attalias>
                <atprecis Sync="TRUE">38</atprecis>
                <attscale Sync="TRUE">8</attscale>
            </attr>
            <attr>
                <attrlabl>HYDROLOGIC_GROUP</attrlabl>
                <attrdef>Hydrologic soil groups are based on estimates of runoff potential.  Soils are assigned to one of four groups according to the rate of water infiltration when the soils are not protected by vegetation, are thoroughly wet, and receive precipitation from long-duration storms.   The classes are based on the following factors: (1) intake and transmission of water under the conditions of maximum yearly wetness (thoroughly wet); (2) soil not frozen; (3) bare soil surface; (4) maximum swelling of expansive clays.  The slope of the soil surface is not considered when assigning hydrologic soil groups. 

The four hydrologic soil groups are:

Group A. Soils having a high infiltration rate (low runoff potential) when thoroughly wet. These consist mainly of deep, well drained to excessively drained sands or gravelly sands.  These soils have a high rate of water transmission.

Group B. Soils having a moderate infiltration rate when thoroughly wet. These consist chiefly of moderately deep or deep, moderately well drained or well drained soils that have moderately fine texture to moderately coarse texture. These soils have a moderate rate of water transmission.

Group C. Soils having a slow infiltration rate when thoroughly wet. These consist chiefly of soils having a layer that impedes the downward movement of water or soils of moderately fine texture or fine texture. These soils have a slow rate of water transmission.

Group D. Soils having a very slow infiltration rate (high runoff potential) when thoroughly wet. These consist chiefly of clays that have a high shrink-swell potential, soils that have a high water table, soils that have a claypan or clay layer at or near the surface, and soils that are shallow over nearly impervious material. These soils have a very slow rate of water transmission.

If a soil is assigned to a dual hydrologic group (A/D, B/D, or C/D), the first letter is for drained areas and the second is for undrained areas.

In its simplest form, hydrologic soil group is determined by the water transmitting soil layer with the lowest saturated hydraulic conductivity and depth to any layer that is more or less water impermeable (such as a fragipan or duripan) or depth to a water table (if present). The least transmissive layer can be any soil horizon that transmits water at a slower rate relative to those horizons above or below it. For example, a layer having a saturated hydraulic conductivity of 9.0 micrometers per second (1.3 inches per hour) is the least transmissive layer in a soil if the layers above and below it have a saturated hydraulic conductivity of 23 micrometers per second (3.3 inches per hour).  

Hydrologic groups are used in equations that estimate runoff from rainfall.  These estimates are needed for solving hydrologic problems that arise in planning watershed protection and flood-prevention projects and for planning or designing structures for the use, control, and disposal of water.

The complete definition and official criteria for hydrologic soil groups are available online at (Title 210, National Engineering Handbook, part 630, chapter 7, “Hydrologic Soil Groups”) - direct link - https://directives.sc.egov.usda.gov/OpenNonWebContent.aspx?content=22526.wba. </attrdef>
                <attrdefs>United States Department of Agriculture - Natural Resources Conservations Service</attrdefs>
                <attrdomv>
                    <edom>
                        <edomv>A</edomv>
                        <edomvd>Group A—Soils in this group have low runoff potential when thoroughly wet. Water is transmitted freely through the soil. Group A soils typically have less than 10 percent clay and more than 90 percent sand or gravel and have gravel or sand textures. Some soils having loamy sand, sandy loam, loam or silt loam textures may be placed in this group if they are well aggregated, of low bulk density, or contain greater than 35 percent rock fragments..  The limits on the diagnostic physical characteristics of group A are as follows. The saturated hydraulic conductivity of all soil layers exceeds 40.0 micrometers per second (5.67 inches per hour). The depth to any water impermeable layer is greater than 50 centimeters [20 inches]. The depth to the water table is greater than 60 centimeters [24 inches]. Soils that are deeper than 100 centimeters [40 inches] to a water impermeable layer and a water table are in group A if the saturated hydraulic conductivity of all soil layers within 100 centimeters [40 inches] of the surface exceeds 10 micrometers per second (1.42 inches per hour).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service: Title 210, National Engineering Handbook, part 630, chapter 7, “Hydrologic Soil Groups”</edomvds>
                    </edom>
                    <edom>
                        <edomv>B</edomv>
                        <edomvd>Group B—Soils in this group have moderately low runoff potential when thoroughly wet. Water transmission through the soil is unimpeded. Group B soils typically have between 10 percent and 20 percent clay and 50 percent to 90 percent sand and have loamy sand or sandy loam textures. Some soils having loam, silt loam, silt, or sandy clay loam textures may be placed in this group if they are well aggregated, of low bulk density, or contain greater than 35 percent rock fragments..  The limits on the diagnostic physical characteristics of group B are as follows. The saturated hydraulic conductivity in the least transmissive layer between the surface and 50 centimeters [20 inches] ranges from 10.0 micrometers per second (1.42 inches per hour) to 40.0 micrometers per second (5.67 inches per hour). The depth to any water impermeable layer is greater than 50 centimeters [20 inches]. The depth to the water table is greater than 60 centimeters [24 inches]. Soils that are deeper than 100 centimeters [40 inches] to a water impermeable layer and a water table are in group B if the saturated hydraulic conductivity of all soil layers within 100 centimeters [40 inches] of the surface exceeds 4.0 micrometers per second (0.57 inches per hour) but is less than 10.0 micrometers per second (1.42 inches per hour).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service: Title 210, National Engineering Handbook, part 630, chapter 7, “Hydrologic Soil Groups”</edomvds>
                    </edom>
                    <edom>
                        <edomv>C</edomv>
                        <edomvd>Group C—Soils in this group have moderately high runoff potential when thoroughly wet. Water transmission through the soil is somewhat restricted. Group C soils typically have between 20 percent and 40 percent clay and less than 50 percent sand and have loam, silt loam, sandy clay loam, clay loam, and silty clay loam textures. Some soils having clay, silty clay, or sandy clay textures may be placed in this group if they are well aggregated, of low bulk density, or contain greater than 35 percent rock fragments..  The limits on the diagnostic physical characteristics of group C are as follows. The saturated hydraulic conductivity in the least transmissive layer between the surface and 50 centimeters [20 inches] is between 1.0 micrometers per second (0.14 inches per hour) and 10.0 micrometers per second (1.42 inches per hour). The depth to any water impermeable layer is greater than 50 centimeters [20 inches]. The depth to the water table is greater than 60 centimeters [24 inches]. Soils that are deeper than 100 centimeters [40 inches] to a restriction and a water table are in group C if the saturated hydraulic conductivity of all soil layers within 100 centimeters [40 inches] of the surface exceeds 0.40 micrometers per second (0.06 inches per hour) but is less than 4.0 micrometers per second (0.57 inches per hour).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service: Title 210, National Engineering Handbook, part 630, chapter 7, “Hydrologic Soil Groups”</edomvds>
                    </edom>
                    <edom>
                        <edomv>D</edomv>
                        <edomvd>Group D—Soils in this group have high runoff potential when thoroughly wet. Water movement through the soil is restricted or very restricted. Group D soils typically have greater than 40 percent clay, less than 50 percent sand, and have clayey textures. In some areas, they also have high shrink-swell potential. All soils with a depth to a water impermeable layer less than 50 centimeters [20 inches] and all soils with a water table within 60 centimeters [24 inches] of the surface are in this group, although some may have a dual classification, as described in the next section, if they can be adequately drained..  The limits on the physical diagnostic characteristics of group D are as follows. For soils with a water impermeable layer at a depth between 50 centimeters and 100 centimeters [20 and 40 inches], the saturated hydraulic conductivity in the least transmissive soil layer is less than or equal to 1.0 micrometers per second (0.14 inches per hour). For soils that are deeper than 100 centimeters [40 inches] to a restriction or water table, the saturated hydraulic conductivity of all soil layers within 100 centimeters [40 inches] of the surface is less than or equal to 0.40 micrometers per second (0.06 inches per hour).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service: Title 210, National Engineering Handbook, part 630, chapter 7, “Hydrologic Soil Groups”</edomvds>
                    </edom>
                    <edom>
                        <edomv>A/D</edomv>
                        <edomvd>Dual hydrologic soil groups—Certain wet soils are placed in group D based solely on the presence of a water table within 60 centimeters [24 inches] of the surface even though the saturated hydraulic conductivity may be favorable for water transmission. If these soils can be adequately drained, then they are assigned to dual hydrologic soil groups (A/D, B/D, and C/D) based on their saturated hydraulic conductivity and the water table depth when drained. The first letter applies to the drained condition and the second to the undrained condition. For the purpose of hydrologic soil group, adequately drained means that the seasonal high water table is kept at least 60 centimeters [24 inches] below the surface in a soil where it would be higher in a natural state.</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service: Title 210, National Engineering Handbook, part 630, chapter 7, “Hydrologic Soil Groups”</edomvds>
                    </edom>
                    <edom>
                        <edomv>B/D</edomv>
                        <edomvd>Dual hydrologic soil groups—Certain wet soils are placed in group D based solely on the presence of a water table within 60 centimeters [24 inches] of the surface even though the saturated hydraulic conductivity may be favorable for water transmission. If these soils can be adequately drained, then they are assigned to dual hydrologic soil groups (A/D, B/D, and C/D) based on their saturated hydraulic conductivity and the water table depth when drained. The first letter applies to the drained condition and the second to the undrained condition. For the purpose of hydrologic soil group, adequately drained means that the seasonal high water table is kept at least 60 centimeters [24 inches] below the surface in a soil where it would be higher in a natural state.</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service: Title 210, National Engineering Handbook, part 630, chapter 7, “Hydrologic Soil Groups”</edomvds>
                    </edom>
                    <edom>
                        <edomv>C/D</edomv>
                        <edomvd>Dual hydrologic soil groups—Certain wet soils are placed in group D based solely on the presence of a water table within 60 centimeters [24 inches] of the surface even though the saturated hydraulic conductivity may be favorable for water transmission. If these soils can be adequately drained, then they are assigned to dual hydrologic soil groups (A/D, B/D, and C/D) based on their saturated hydraulic conductivity and the water table depth when drained. The first letter applies to the drained condition and the second to the undrained condition. For the purpose of hydrologic soil group, adequately drained means that the seasonal high water table is kept at least 60 centimeters [24 inches] below the surface in a soil where it would be higher in a natural state.</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service: Title 210, National Engineering Handbook, part 630, chapter 7, “Hydrologic Soil Groups”</edomvds>
                    </edom>
                </attrdomv>
                <attrtype>String</attrtype>
                <attwidth>255</attwidth>
                <attalias>Hydrologic Group Designation</attalias>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
            </attr>
            <attr>
                <attrlabl>SURFACE_RUNOFF</attrlabl>
                <attrdef>Surface runoff refers to the loss of water from an area by flow over the land surface. Surface runoff classes are based on slope, climate, and vegetative cover. The concept indicates relative runoff for very specific conditions. It is assumed that the surface of the soil is bare and that the retention of surface water resulting from irregularities in the ground surface is minimal. The classes are negligible, very low, low, medium, high, and very high.

Surface runoff or overland flow occurs when the rainfall rate is greater than the infiltration rate. The runoff equation was developed for this condition. The runoff flows on the surface of the watershed and through channels to the point of reference. This type of runoff appears in the hydrograph after the initial demands of interception, infiltration, and surface storage have been satisfied. It varies during the storm and ends during or soon after the storm. The volume of surface runoff flowing down dry channels of watersheds in arid, semiarid, or subhumid climates may be reduced by transmission losses (NEH, part 630, chapter 19), which could be large enough to eliminate the runoff.

Surface runoff is modeled largely as a function of saturated hydraulic conductivity K(sat) and the representative slope of the soils.  Saturated hydraulic conductivity is a quantitative measure of a saturated soil's ability to transmit water when subjected to a hydraulic gradient.  It can be thought of as the ease with which pores of a saturated soil permit water movement.  The units for saturated hydraulic conductivity can be expressed in micrometers per second and the value ranges for surface runoff class are shared herein. </attrdef>
                <attrdefs>United States Department of Agriculture - Natural Resources Conservations Service - Soil Survey Manual. </attrdefs>
                <attrdomv>
                    <edom>
                        <edomv>Negligible</edomv>
                        <edomvd>Not observed. </edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service:  Part 630 Hydrology National Engineering Handbook - Estimation of Direct Runoff from Storm Rainfall</edomvds>
                    </edom>
                    <edom>
                        <edomv>Very low</edomv>
                        <edomvd>Less than 0.01 micrometers per second. </edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service:  Part 630 Hydrology National Engineering Handbook - Estimation of Direct Runoff from Storm Rainfall</edomvds>
                    </edom>
                    <edom>
                        <edomv>Low</edomv>
                        <edomvd>Between 0.01 and 0.1 micrometers per second. </edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service:  Part 630 Hydrology National Engineering Handbook - Estimation of Direct Runoff from Storm Rainfall</edomvds>
                    </edom>
                    <edom>
                        <edomv>Medium</edomv>
                        <edomvd>Between 0.1 and 10.0 micrometers per second. </edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service:  Part 630 Hydrology National Engineering Handbook - Estimation of Direct Runoff from Storm Rainfall</edomvds>
                    </edom>
                    <edom>
                        <edomv>High</edomv>
                        <edomvd>Between 10.0 and 100.0 micrometers per second. </edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service:  Part 630 Hydrology National Engineering Handbook - Estimation of Direct Runoff from Storm Rainfall</edomvds>
                    </edom>
                    <edom>
                        <edomv>Very high</edomv>
                        <edomvd>More than 100.0 micrometers per second. </edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service:  Part 630 Hydrology National Engineering Handbook - Estimation of Direct Runoff from Storm Rainfall</edomvds>
                    </edom>
                    <edom>
                        <edomv>Null</edomv>
                        <edomvd>Measurement not provided or applicable. </edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service:  Part 630 Hydrology National Engineering Handbook - Estimation of Direct Runoff from Storm Rainfall</edomvds>
                    </edom>
                </attrdomv>
                <attrtype>String</attrtype>
                <attwidth>255</attwidth>
                <attalias>Surface Runoff Class</attalias>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
            </attr>
            <attr>
                <attrlabl>WATER_TABLE_KIND</attrlabl>
                <attrdef>Water table refers to a saturated zone in the soil.  The water features table indicates, by month, depth to the top (upper limit ) and base (lower limit ) of the saturated zone in most years.  Estimates of the upper and lower limits are based mainly on observations of the water table at selected sites and on evidence of a saturated zone, namely grayish colors or mottles (redoximorphic features) in the soil.  A saturated zone that lasts for less than a month is not considered a water table.  The kind of water table, apparent or perched, is given if a seasonal high water table exists in the soil.  A water table is perched if free water is restricted from moving downward in the soil by a restrictive feature, in most cases a hardpan; there is a dry layer of soil underneath a wet layer.  A water table is apparent if free water is present in all horizons from its upper boundary to below 2 meters or to the depth of observation.  The water table kind listed is for the first major component in the map unit.</attrdef>
                <attrdefs>United States Department of Agriculture - Natural Resources Conservations Service</attrdefs>
                <attrdomv>
                    <edom>
                        <edomv>Apparent</edomv>
                        <edomvd>A water table is apparent if free water is present in all horizons from its upper boundary to below 2 meters or to the depth of observation.</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Perched</edomv>
                        <edomvd>A water table is perched if free water is restricted from moving downward in the soil by a restrictive feature, in most cases a hardpan; there is a dry layer of soil underneath a wet layer.</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                </attrdomv>
                <attrtype>String</attrtype>
                <attwidth>255</attwidth>
                <attalias>Water Table Kind</attalias>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
            </attr>
            <attr>
                <attrlabl>PONDING_DURATION</attrlabl>
                <attrdef>Ponding is standing water in a closed depression.  Unless a drainage system is installed, the water is removed only by percolation, transpiration, or evaporation.  The table indicates surface water depth and the duration and frequency of ponding.  Duration is expressed as very brief if less than 2 days, brief if 2 to 7 days, long if 7 to 30 days, and very long if more than 30 days.  Frequency is expressed as none, rare, occasional, and frequent.  None means that ponding is not probable; rare that it is unlikely but possible under unusual weather conditions (the chance of ponding is nearly 0 percent to 5 percent in any year); occasional that it occurs, on the average, once or less in 2 years (the chance of ponding is 5 to 50 percent in any year); and frequent that it occurs, on the average, more than once in 2 years (the chance of ponding is more than 50 percent in any year).</attrdef>
                <attrdefs>United States Department of Agriculture - Natural Resources Conservations Service</attrdefs>
                <attrdomv>
                    <edom>
                        <edomv>Very brief (less than 2 days)</edomv>
                        <edomvd>The during of ponding is less than 2 days.  </edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Brief (2 to 7 days)</edomv>
                        <edomvd>The during of ponding is between 2 and 7 days. </edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Long (7 to 30 days)</edomv>
                        <edomvd>The during of ponding is between 7 and 30 days. </edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Very long (more than 30 days)</edomv>
                        <edomvd>The during of ponding is more than 30 days.  </edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                </attrdomv>
                <attrtype>String</attrtype>
                <attwidth>255</attwidth>
                <attalias>Ponding Duration</attalias>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
            </attr>
            <attr>
                <attrlabl>PONDING_FREQUENCY</attrlabl>
                <attrdef>Ponding is standing water in a closed depression.  Unless a drainage system is installed, the water is removed only by percolation, transpiration, or evaporation.  The table indicates surface water depth and the duration and frequency of ponding.  Duration is expressed as very brief if less than 2 days, brief if 2 to 7 days, long if 7 to 30 days, and very long if more than 30 days.  Frequency is expressed as none, rare, occasional, and frequent.  None means that ponding is not probable; rare that it is unlikely but possible under unusual weather conditions (the chance of ponding is nearly 0 percent to 5 percent in any year); occasional that it occurs, on the average, once or less in 2 years (the chance of ponding is 5 to 50 percent in any year); and frequent that it occurs, on the average, more than once in 2 years (the chance of ponding is more than 50 percent in any year).</attrdef>
                <attrdefs>United States Department of Agriculture - Natural Resources Conservations Service</attrdefs>
                <attrdomv>
                    <edom>
                        <edomv>None</edomv>
                        <edomvd>Ponding is not probable. </edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Rare</edomv>
                        <edomvd>Ponding is unlikely but possible under unusual weather conditions (the chance of ponding is nearly 0 percent to 5 percent in any year).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Occasional</edomv>
                        <edomvd>Ponding occurs, on the average, once or less in 2 years (the chance of ponding is 5 to 50 percent in any year).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Frequent</edomv>
                        <edomvd>Ponding occurs, on the average, more than once in 2 years (the chance of ponding is more than 50 percent in any year).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                </attrdomv>
                <attrtype>String</attrtype>
                <attwidth>255</attwidth>
                <attalias>Ponding Frequency</attalias>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
            </attr>
            <attr>
                <attrlabl>FLOODING_DURATION</attrlabl>
                <attrdef>Flooding is the temporary inundation of an area caused by overflowing streams, by runoff from adjacent slopes, or by tides.  Water standing for short periods after rainfall or snowmelt is not considered flooding, and water standing in swamps and marshes is considered ponding rather than flooding.

Duration and frequency are estimated.  Duration is expressed as extremely brief if 0.1 hour to 4 hours, very brief if 4 hours to 2 days, brief if 2 to 7 days, long if 7 to 30 days, and very long if more than 30 days.  Frequency is expressed as none, very rare, rare, occasional, frequent, and very frequent.  None means that flooding is not probable; very rare that it is very unlikely but possible under extremely unusual weather conditions (the chance of flooding is less than 1 percent in any year); rare that it is unlikely but possible under unusual weather conditions (the chance of flooding is 1 to 5 percent in any year); occasional that it occurs infrequently under normal weather conditions (the chance of flooding is 5 to 50 percent in any year); frequent that it is likely to occur often under normal weather conditions (the chance of flooding is more than 50 percent in any year but is less than 50 percent in all months in any year); and very frequent that it is likely to occur very often under normal weather conditions (the chance of flooding is more than 50 percent in all months of any year).

The information is based on evidence in the soil profile, namely thin strata of gravel, sand, silt, or clay deposited by floodwater; irregular decrease in organic matter content with increasing depth; and little or no horizon development.

Also considered are local information about the extent and levels of flooding and the relation of each soil on the landscape to historic floods.  Information on the extent of flooding based on soil data is less specific than that provided by detailed engineering surveys that delineate flood-prone areas at specific flood frequency levels.</attrdef>
                <attrdefs>United States Department of Agriculture - Natural Resources Conservations Service</attrdefs>
                <attrdomv>
                    <edom>
                        <edomv>Extremely brief (0.1 hour to 4 hours)</edomv>
                        <edomvd>Flooding duration is between .1 hours and 4 hours. </edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Very brief (4 to 48 hours)</edomv>
                        <edomvd>Flooding duration is between 4 hours and 2 days (48 hours). </edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Brief (2 to 7 days)</edomv>
                        <edomvd>Flooding duration is between 2 days and 7 days. </edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Long (7 to 30 days)</edomv>
                        <edomvd>Flooding duration is between 7 days and 30 days. </edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Very long (more than 30 days)</edomv>
                        <edomvd>Flooding duration is more than 30 days.  </edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                </attrdomv>
                <attrtype>String</attrtype>
                <attwidth>255</attwidth>
                <attalias>Flooding Duration</attalias>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
            </attr>
            <attr>
                <attrlabl>FLOODING_FREQUENCY</attrlabl>
                <attrdef>Flooding is the temporary inundation of an area caused by overflowing streams, by runoff from adjacent slopes, or by tides.  Water standing for short periods after rainfall or snowmelt is not considered flooding, and water standing in swamps and marshes is considered ponding rather than flooding.

Duration and frequency are estimated.  Duration is expressed as extremely brief if 0.1 hour to 4 hours, very brief if 4 hours to 2 days, brief if 2 to 7 days, long if 7 to 30 days, and very long if more than 30 days.  Frequency is expressed as none, very rare, rare, occasional, frequent, and very frequent.  None means that flooding is not probable; very rare that it is very unlikely but possible under extremely unusual weather conditions (the chance of flooding is less than 1 percent in any year); rare that it is unlikely but possible under unusual weather conditions (the chance of flooding is 1 to 5 percent in any year); occasional that it occurs infrequently under normal weather conditions (the chance of flooding is 5 to 50 percent in any year); frequent that it is likely to occur often under normal weather conditions (the chance of flooding is more than 50 percent in any year but is less than 50 percent in all months in any year); and very frequent that it is likely to occur very often under normal weather conditions (the chance of flooding is more than 50 percent in all months of any year).

The information is based on evidence in the soil profile, namely thin strata of gravel, sand, silt, or clay deposited by floodwater; irregular decrease in organic matter content with increasing depth; and little or no horizon development.

Also considered are local information about the extent and levels of flooding and the relation of each soil on the landscape to historic floods.  Information on the extent of flooding based on soil data is less specific than that provided by detailed engineering surveys that delineate flood-prone areas at specific flood frequency levels.</attrdef>
                <attrdefs>United States Department of Agriculture - Natural Resources Conservations Service</attrdefs>
                <attrdomv>
                    <edom>
                        <edomv>None</edomv>
                        <edomvd>Flooding is not probable.</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Very Rare</edomv>
                        <edomvd>Flooding is very unlikely but possible under extremely unusual weather conditions (the chance of flooding is less than 1 percent in any year).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Rare</edomv>
                        <edomvd>Flooding is unlikely but possible under unusual weather conditions (the chance of flooding is 1 to 5 percent in any year). </edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Occasional</edomv>
                        <edomvd>Flooding occurs infrequently under normal weather conditions (the chance of flooding is 5 to 50 percent in any year). </edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Frequent</edomv>
                        <edomvd>Flooding is likely to occur often under normal weather conditions (the chance of flooding is more than 50 percent in any year but is less than 50 percent in all months in any year). </edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Very frequent</edomv>
                        <edomvd>Flooding is likely to occur very often under normal weather conditions (the chance of flooding is more than 50 percent in all months of any year).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                </attrdomv>
                <attrtype>String</attrtype>
                <attwidth>255</attwidth>
                <attalias>Flooding Frequency</attalias>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
            </attr>
            <attr>
                <attrlabl Sync="TRUE">NATIONAL_COMMODITY_CROP_PRODUCT</attrlabl>
                <attalias Sync="FALSE">National Commodity Crop Productivity Index</attalias>
                <attrtype Sync="TRUE">String</attrtype>
                <attwidth Sync="TRUE">255</attwidth>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
                <attrdef>National Commodity Crop Productivity Index is a method of arraying the soils of the United States for non-irrigated commodity crop production based on their inherent soil properties.  The rating a soil is assigned is the highest one of four basic crop group indices, which are based on the climate where the crop is typically grown.  Cooler climates are represented by winter wheat, moderate climates are represented by corn and, new for this version, a separate soybeans model, and warmer climates are represented by cotton.

The interpretation is applicable to both heavily populated and sparsely populated areas.  Ratings are for soils in their present condition.  The present land use is not considered in the ratings.

Ratings are based on properties and qualities to the depth normally observed during soil mapping (approximately 6 feet).  Soil, site, and climate properties that influence the growth of crops are major considerations.  Soil productivity is influenced by many soil properties.  An ideal soil will store adequate amounts of water to nurture the crop between rains.  This soil will have a near-neutral pH, will store nutrients, and lack toxic materials.  The soil will have no barriers, either physical or chemical, to root growth.  Water and gas transmission through the soil will be sufficient to maintain both water and oxygen at sufficient levels in the root zone.  The soil will not be saturated with water during the growing season to the point that root growth is inhibited.  The soil will not be subject to excessive flooding or ponding during the growing season.  Slope is an important consideration because it affects erosion by water, runoff, and the operation of equipment.  The climate must provide adequate water and heat to allow the desired crop to mature.  A soil that differs from the ideal in any of these features will have lower inherent productivity for a particular crop.  The further a soil differs from ideality in any one or all of the factors that determine inherent productivity, the lower its inherent productivity will be.

The ratings are both verbal and numerical. Rating class terms indicate the estimated productivity which is determined by all of the soil, site, and climatic features that affect crop productivity.  "High inherent productivity" indicates that the soil, site, and climate have features that are very favorable for crop production.  High yields and low risk of crop failure can be expected if a high level of management is employed.  "Moderately high inherent productivity" indicates that the soil has features that are generally quite favorable crop production.  Good yields and moderately low risk of crop failure can be expected.  "Moderate inherent productivity" indicates that the soil has features that are generally favorable crop production.  Good yields and moderate risk of crop failure can be expected.  "Moderately low inherent productivity" indicates that the soil has features that are generally not favorable crop production.  Low yields and moderately high risk of crop failure can be expected.  "Low inherent productivity" indicates that the soil has one or more features that are unfavorable for crop production. Low yields and high risk of crop failure can be expected.

Other components with different ratings may be present in each map unit.  The ratings for all components, regardless of the map unit aggregated rating, can be viewed by generating the equivalent report from the Soil Reports tab in Web Soil Survey.  Onsite investigation may be needed to validate these interpretations and to confirm the identity of the soil on a given site.</attrdef>
                <attrdefs>United States Department of Agriculture - Natural Resources Conservations Service</attrdefs>
                <attrdomv>
                    <edom>
                        <edomv>High inherent productivity</edomv>
                        <edomvd>Indicates that the soil, site, and climate have features that are very favorable for crop production.  High yields and low risk of crop failure can be expected if a high level of management is employed.</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Moderately high inherent productivity</edomv>
                        <edomvd>Indicates that the soil has features that are generally quite favorable crop production.  Good yields and moderately low risk of crop failure can be expected.</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Moderate inherent productivity</edomv>
                        <edomvd>Indicates that the soil has features that are generally favorable crop production.  Good yields and moderate risk of crop failure can be expected.</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Moderately low inherent productivity</edomv>
                        <edomvd>Indicates that the soil has features that are generally not favorable crop production.  Low yields and moderately high risk of crop failure can be expected.</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Low inherent productivity</edomv>
                        <edomvd>Indicates that the soil has one or more features that are unfavorable for crop production. Low yields and high risk of crop failure can be expected.</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                </attrdomv>
            </attr>
            <attr>
                <attrlabl Sync="TRUE">LIMITATIONS_DWELLINGS_WO_BASEME</attrlabl>
                <attalias Sync="FALSE">Limitations on Dwellings without Basements</attalias>
                <attrtype Sync="TRUE">String</attrtype>
                <attwidth Sync="TRUE">255</attwidth>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
                <attrdef>Soil properties influence the development of building sites, including the selection of the site, the design of the structure, construction, performance after construction, and maintenance.  This field indicates the degree and kind of soil limitations that affect dwellings and small commercial buildings.

Dwellings are single-family houses of three stories or less.  For dwellings without basements, the foundation is assumed to consist of spread footings of reinforced concrete built on undisturbed soil at a depth of 2 feet or at the depth of maximum frost penetration, whichever is deeper.  The ratings for dwellings are based on the soil properties that affect the capacity of the soil to support a load without movement and on the properties that affect excavation and construction costs.  The properties that affect the load-supporting capacity include depth to a water table, ponding, flooding, subsidence, linear extensibility (shrink-swell potential), and compressibility.  Compressibility is inferred from the Unified classification. The properties that affect the ease and amount of excavation include depth to a water table, ponding, flooding, slope, depth to bedrock or a cemented pan, hardness of bedrock or a cemented pan, and the amount and size of rock fragments.

Rating class terms indicate the extent to which the soils are limited by all of the soil features that affect building site development.  Not limited indicates that the soil has features that are very favorable for the specified use.  Good performance and very low maintenance can be expected.  Somewhat limited indicates that the soil has features that are moderately favorable for the specified use.  The limitations can be overcome or minimized by special planning, design, or installation.  Fair performance and moderate maintenance can be expected.  Very limited indicates that the soil has one or more features that are unfavorable for the specified use.  The limitations generally cannot be overcome without major soil reclamation, special design, or expensive installation procedures.  Poor performance and high maintenance can be expected.

Information in this field is intended for land use planning, for evaluating land use alternatives, and for planning site investigations prior to design and construction. The information, however, has limitations.  For example, estimates and other data generally apply only to that part of the soil between the surface and a depth of 5 to 7 feet.  Because of the map scale, small areas of different soils may be included within the mapped areas of a specific soil.

The information is not site specific and does not eliminate the need for onsite investigation of the soils or for testing and analysis by personnel experienced in the design and construction of engineering works.

Government ordinances and regulations that restrict certain land uses or impose specific design criteria were not considered in preparing the information in this field.  Local ordinances and regulations should be considered in planning, in site selection, and in design.</attrdef>
                <attrdefs>United States Department of Agriculture - Natural Resources Conservations Service</attrdefs>
                <attrdomv>
                    <edom>
                        <edomv>Not rated</edomv>
                        <edomvd>Soils map unit has not been rated.</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Not limited</edomv>
                        <edomvd>Indicates that the soil has features that are very favorable for the specified use.  Good performance and very low maintenance can be expected.</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Somewhat limited</edomv>
                        <edomvd>Indicates that the soil has features that are moderately favorable for the specified use.  The limitations can be overcome or minimized by special planning, design, or installation.  Fair performance and moderate maintenance can be expected.</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Very limited</edomv>
                        <edomvd>Indicates that the soil has one or more features that are unfavorable for the specified use.  The limitations generally cannot be overcome without major soil reclamation, special design, or expensive installation procedures.  Poor performance and high maintenance can be expected.</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                </attrdomv>
            </attr>
            <attr>
                <attrlabl Sync="TRUE">LIMITATIONS_DWELLINGS_W_BASEMEN</attrlabl>
                <attalias Sync="FALSE">Limitations on Dwellings with Basements</attalias>
                <attrtype Sync="TRUE">String</attrtype>
                <attwidth Sync="TRUE">255</attwidth>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
                <attrdef>Soil properties influence the development of building sites, including the selection of the site, the design of the structure, construction, performance after construction, and maintenance.  This field indicates the degree and kind of soil limitations that affect dwellings and small commercial buildings.

Dwellings are single-family houses of three stories or less.  For dwellings with basements, the foundation is assumed to consist of spread footings of reinforced concrete built on undisturbed soil at a depth of about 7 feet.  The ratings for dwellings are based on the soil properties that affect the capacity of the soil to support a load without movement and on the properties that affect excavation and construction costs.  The properties that affect the load-supporting capacity include depth to a water table, ponding, flooding, subsidence, linear extensibility (shrink-swell potential), and compressibility.  Compressibility is inferred from the Unified classification. The properties that affect the ease and amount of excavation include depth to a water table, ponding, flooding, slope, depth to bedrock or a cemented pan, hardness of bedrock or a cemented pan, and the amount and size of rock fragments.

Rating class terms indicate the extent to which the soils are limited by all of the soil features that affect building site development.  Not limited indicates that the soil has features that are very favorable for the specified use.  Good performance and very low maintenance can be expected.  Somewhat limited indicates that the soil has features that are moderately favorable for the specified use.  The limitations can be overcome or minimized by special planning, design, or installation.  Fair performance and moderate maintenance can be expected.  Very limited indicates that the soil has one or more features that are unfavorable for the specified use.  The limitations generally cannot be overcome without major soil reclamation, special design, or expensive installation procedures.  Poor performance and high maintenance can be expected.

Information in this field is intended for land use planning, for evaluating land use alternatives, and for planning site investigations prior to design and construction. The information, however, has limitations.  For example, estimates and other data generally apply only to that part of the soil between the surface and a depth of 5 to 7 feet.  Because of the map scale, small areas of different soils may be included within the mapped areas of a specific soil.

The information is not site specific and does not eliminate the need for onsite investigation of the soils or for testing and analysis by personnel experienced in the design and construction of engineering works.

Government ordinances and regulations that restrict certain land uses or impose specific design criteria were not considered in preparing the information in this field.  Local ordinances and regulations should be considered in planning, in site selection, and in design.</attrdef>
                <attrdefs>United States Department of Agriculture - Natural Resources Conservations Service</attrdefs>
                <attrdomv>
                    <edom>
                        <edomv>Not rated</edomv>
                        <edomvd>Soils map unit has not been rated.</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Not limited</edomv>
                        <edomvd>Indicates that the soil has features that are very favorable for the specified use.  Good performance and very low maintenance can be expected.</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Somewhat limited</edomv>
                        <edomvd>Indicates that the soil has features that are moderately favorable for the specified use.  The limitations can be overcome or minimized by special planning, design, or installation.  Fair performance and moderate maintenance can be expected.</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Very limited</edomv>
                        <edomvd>Indicates that the soil has one or more features that are unfavorable for the specified use.  The limitations generally cannot be overcome without major soil reclamation, special design, or expensive installation procedures.  Poor performance and high maintenance can be expected.</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                </attrdomv>
            </attr>
            <attr>
                <attrlabl>REPRESENTATIVE_LANDFORM</attrlabl>
                <attrdef>Geographic order suggests natural relationships.  For example, weathering and erosion of bedrock by running water commonly sculpt landforms within a landscape.  Over the ages, earthy material has been removed from some landforms and deposited on others.  Landforms are interrelated.  An entire area has unity through the interrelationships of its landforms.

Each distinguishable landform may have one kind of soil or several.  Climate, including its change over time, commonly will have been about the same throughout the extent of a minor landform.  In addition, the kinds of vegetation associated with climate will likely have been fairly uniform.  Relief varies within some limits that are characteristic of the landform. The time that the material has been subjected to soil formation will probably have been about the same throughout the landform.  The surface of the landform may extend through one kind of parent material and into another.  Of course, position on the landform may have influenced soil-water relationships, microclimate, and vegetation.

Just as different kinds of soil are commonly associated in a landscape, several landscapes are commonly associated in still larger areas.  These areas cover thousands or tens of thousands of square kilometers.  Many can be identified on photographs taken from satellites.  From this vantage point, broad physiographic regions are apparent.  Examples in the U.S. are the East Gulf Coastal Plain, the Appalachian Plateau, the Wyoming Basin, and the Great Plains.  These broad units typically have some unity of landscape, as indicated by such terms as “plain,” “plateau,” and “mountain.”  These physiographic units are composed of many kinds of soil.

The main relief features of a physiographic unit are commonly the joint products of deep-seated geologic forces and a complex set of surface processes that have acted over long spans of time.  Within a physiographic unit, groups of minor landforms are shaped principally by climate-controlled processes.  The climate and biological factors, however, vary much less within a geomorphic unit than across a continent.

Still broader than the geomorphic units are great morphogenetic regions that have distinctive climates.  For example, one classification recognizes glacial, periglacial, arid, semiarid-subhumid, humid-temperate, and humid-tropical climatic regions associated with distinctive sets of geomorphic processes.  Other major regions are characterized by seasonal climatic variation.  These geomorphic-climatic regions are related to soil moisture and soil temperature regimes.  Thus, the great climatic regions are divided into major physiographic units. Landscapes and associated landforms are small parts of these units and are commonly of relatively recent origin.

The landforms important in soil mapping may include constructional units, such as glacial moraines and stream terraces, and elements of local sequences of graded erosional and constructional land surfaces.  These bear the imprint of local, base-level controls under climate-induced processes.  Most surfaces that have formed within the last 10,000 years have been subject to climatic and base-level controls similar to those of the present.  Older surfaces may retain the imprint of climatic conditions and related vegetation of the distant past. Most present-day landforms started to form during the Quaternary period; some started in the late Tertiary period.  In many places, conditions of the past differed significantly from those of the present.  Understanding climatic changes, both locally and worldwide, into the far past contributes to understanding the attributes of present-day landforms.

Geomorphic processes are important in mapping soils. Soil scientists need a working knowledge of local geomorphic relationships in areas where they map.  They should also understand the interpretations of landforms and land surfaces made by geomorphologists.  The intricate interrelationships of soil and landscape are best studied by collaboration between soil scientists and geomorphologists.

For information on the standards and protocols for describing landscapes and geomorphology visit this link - https://www.nrcs.usda.gov/wps/portal/nrcs/detail/soils/ref/?cid=nrcs142p2_054252. 

The following links provide a descriptive method and a technical guide for applying and understanding geomorphic and geologic concepts and terms for soil inventory in the USA National Cooperative Soil Survey (NCSS) Program.

To explore the Geomorphic Description System visit - https://www.nrcs.usda.gov/Internet/FSE_DOCUMENTS/nrcs142p2_051068.pdf. 

Part 629 Subpart A (General Information) of the National Soil Survey Handbook (Title 430) provides a glossary of the landform and geologic terms.  To explore that resource visit - https://directives.sc.egov.usda.gov/OpenNonWebContent.aspx?content=41992.wba. 

Part 629 Subpart B (Exhibits) of the National Soil Survey Handbook (Title 430) provides a glossary of the landform and geologic terms with further information on landform nomenclature.  To explore that resource visit - https://directives.sc.egov.usda.gov/OpenNonWebContent.aspx?content=41993.wba. </attrdef>
                <attrdefs>United States Department of Agriculture - Natural Resources Conservations Service</attrdefs>
                <attrdomv>
                    <udom>Values can change with time and are based on standards outlined within the Geomorphic Description System (see Attribute Definition). </udom>
                </attrdomv>
                <attrtype>String</attrtype>
                <attwidth>255</attwidth>
                <attalias>Representative Landform</attalias>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
            </attr>
            <attr>
                <attrlabl Sync="TRUE">LAND_CAPABILITY_CLASS_NONIRRIGA</attrlabl>
                <attalias Sync="FALSE">Land Capability Class (Non-irrigated)</attalias>
                <attrtype Sync="TRUE">Double</attrtype>
                <attwidth Sync="TRUE">8</attwidth>
                <atprecis Sync="TRUE">38</atprecis>
                <attscale Sync="TRUE">8</attscale>
                <attrdef>The land capability classification of map units is provided within this field.  This classification shows, in a general way, the suitability of soils for most kinds of field crops (United States Department of Agriculture, Soil Conservation Service, 1961).  Crops that require special management are excluded.  The soils are grouped according to their limitations for field crops, the risk of damage if they are used for crops, and the way they respond to management.  The criteria used in grouping the soils do not include major and generally expensive landforming that would change slope, depth, or other characteristics of the soils, nor do they include possible but unlikely major reclamation projects.  Capability classification is not a substitute for interpretations designed to show suitability and limitations of groups of soils for rangeland, for forestland, or for engineering purposes.

Capability classes, the broadest groups, are designated by the numbers 1 through 8. The numbers indicate progressively greater limitations and narrower choices for practical use.</attrdef>
                <attrdefs>United States Department of Agriculture - Natural Resources Conservations Service - Soil Conservation Service</attrdefs>
                <attrdomv>
                    <edom>
                        <edomv>—</edomv>
                        <edomvd>Soil classification either has not been assigned or such classification is not applicable.</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service - Soil Conservation Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>1</edomv>
                        <edomvd>Class 1 soils have slight limitations that restrict their use.</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service - Soil Conservation Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>2</edomv>
                        <edomvd>Class 2 soils have moderate limitations that restrict the choice of plants or that require moderate conservation practices.</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service - Soil Conservation Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>3</edomv>
                        <edomvd>Class 3 soils have severe limitations that restrict the choice of plants or that require special conservation practices, or both.</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service - Soil Conservation Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>4</edomv>
                        <edomvd>Class 4 soils have very severe limitations that restrict the choice of plants or that require very careful management, or both.</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service - Soil Conservation Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>5</edomv>
                        <edomvd>Class 5 soils are subject to little or no erosion but have other limitations, impractical to remove, that restrict their use mainly to pasture, rangeland, forestland, or wildlife habitat.</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service - Soil Conservation Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>6</edomv>
                        <edomvd>Class 6 soils have severe limitations that make them generally unsuitable for cultivation and that restrict their use mainly to pasture, rangeland, forestland, or wildlife habitat.</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service - Soil Conservation Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>7</edomv>
                        <edomvd>Class 7 soils have very severe limitations that make them unsuitable for cultivation and that restrict their use mainly to grazing, forestland, or wildlife habitat.</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service - Soil Conservation Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>8</edomv>
                        <edomvd>Class 8 soils and miscellaneous areas have limitations that preclude commercial plant production and that restrict their use to recreational purposes, wildlife habitat, watershed, or esthetic purposes.</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service - Soil Conservation Service</edomvds>
                    </edom>
                </attrdomv>
            </attr>
            <attr>
                <attrlabl Sync="TRUE">LAND_CAPABILITY_SUBCLASS_NONIRR</attrlabl>
                <attalias Sync="FALSE">Land Capability Subclass (Non-irrigated)</attalias>
                <attrtype Sync="TRUE">String</attrtype>
                <attwidth Sync="TRUE">255</attwidth>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
                <attrdef>Capability subclasses are soil groups within one class.  The letter e shows that the main hazard is the risk of erosion unless close-growing plant cover is maintained; w shows that water in or on the soil interferes with plant growth or cultivation (in some soils the wetness can be partly corrected by artificial drainage); s shows that the soil is limited mainly because it is shallow, droughty, or stony; and c, used in only some parts of the United States, shows that the chief limitation is climate that is very cold or very dry.

In class 1 there are no subclasses because the soils of this class have few limitations.  Class 5 contains only the subclasses indicated by w, s, or c because the soils in class 5 are subject to little or no erosion.</attrdef>
                <attrdefs>United States Department of Agriculture - Natural Resources Conservations Service - Soil Conservation Service</attrdefs>
                <attrdomv>
                    <edom>
                        <edomv>e</edomv>
                        <edomvd>Indicates that the main soil hazard is the risk of erosion unless close-growing plant cover is maintained.</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service - Soil Conservation Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>w</edomv>
                        <edomvd>Indicates that water in or on the soil interferes with plant growth or cultivation (in some soils the wetness can be partly corrected by artificial drainage).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service - Soil Conservation Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>s</edomv>
                        <edomvd>Indicates that the soil is limited mainly because it is shallow, droughty, or stony.</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service - Soil Conservation Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>c</edomv>
                        <edomvd>Indicates that the chief limitation is climate that is very cold or very dry (used only in some parts of United States).</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service - Soil Conservation Service</edomvds>
                    </edom>
                </attrdomv>
            </attr>
            <attr>
                <attrlabl>HYDRIC_STATUS</attrlabl>
                <attrdef>The three essential characteristics of wetlands are hydrophytic vegetation, hydric soils, and wetland hydrology (Cowardin and others, 1979; U.S. Army Corps of Engineers, 1987; National Research Council, 1995; Tiner, 1985).  Criteria for all of the characteristics must be met for areas to be identified as wetlands.  Undrained hydric soils that have natural vegetation should support a dominant population of ecological wetland plant species.  Hydric soils that have been converted to other uses should be capable of being restored to wetlands.

Hydric soils are defined by the National Technical Committee for Hydric Soils (NTCHS) as soils that formed under conditions of saturation, flooding, or ponding long enough during the growing season to develop anaerobic conditions in the upper part (Federal Register, 1994).  These soils, under natural conditions, are either saturated or inundated long enough during the growing season to support the growth and reproduction of hydrophytic vegetation.

The NTCHS definition identifies general soil properties that are associated with wetness. In order to determine whether a specific soil is a hydric soil or nonhydric soil, however, more specific information, such as information about the depth and duration of the water table, is needed.  Thus, criteria that identify those estimated soil properties unique to hydric soils have been established (Federal Register, 2002).  These criteria are used to identify map unit components that normally are associated with wetlands. The criteria used are selected estimated soil properties that are described in "Soil Taxonomy" (Soil Survey Staff, 1999) and "Keys to Soil Taxonomy" (Soil Survey Staff, 2006) and in the "Soil Survey Manual" (Soil Survey Division Staff, 1993).

If soils are wet enough for a long enough period of time to be considered hydric, they should exhibit certain properties that can be easily observed in the field.  These visible properties are indicators of hydric soils.  The indicators used to make onsite determinations of hydric soils are specified in "Field Indicators of Hydric Soils in the United States" (Hurt and Vasilas, 2006).

Hydric soils are identified by examining and describing the soil to a depth of about 20 inches.  This depth may be greater if determination of an appropriate indicator so requires.  It is always recommended that soils be excavated and described to the depth necessary for an understanding of the redoximorphic processes.  Then, using the completed soil descriptions, soil scientists can compare the soil features required by each indicator and specify which indicators have been matched with the conditions observed in the soil.  The soil can be identified as a hydric soil if at least one of the approved indicators is present.

Map units that are dominantly made up of hydric soils may have small areas, or inclusions, of nonhydric soils in the higher positions on the landform, and map units dominantly made up of nonhydric soils may have inclusions of hydric soils in the lower positions on the landform.</attrdef>
                <attrdefs>United States Department of Agriculture - Natural Resources Conservations Service - National Technical Committee for Hydric Soils (NTCHS)</attrdefs>
                <attrdomv>
                    <edom>
                        <edomv>Yes</edomv>
                        <edomvd>Soils within the map unit have been classified as hydric. </edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service - National Technical Committee for Hydric Soils (NTCHS)</edomvds>
                    </edom>
                    <edom>
                        <edomv>No</edomv>
                        <edomvd>Soils within the map unit have not been classified as hydric. </edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service - National Technical Committee for Hydric Soils (NTCHS)</edomvds>
                    </edom>
                    <edom>
                        <edomv>Unranked</edomv>
                        <edomvd>Soils within the map unit have not been classified as to their hydric status. </edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service - National Technical Committee for Hydric Soils (NTCHS)</edomvds>
                    </edom>
                </attrdomv>
                <attrtype>String</attrtype>
                <attwidth>255</attwidth>
                <attalias>Hydrologic Status</attalias>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
            </attr>
            <attr>
                <attrlabl Sync="TRUE">LESA</attrlabl>
                <attalias Sync="TRUE">Land Evaluation Score</attalias>
                <attrtype Sync="FALSE">Small Integer</attrtype>
                <attwidth Sync="TRUE">2</attwidth>
                <atprecis Sync="TRUE">5</atprecis>
                <attscale Sync="TRUE">0</attscale>
                <attrdef>In agricultural land evaluation, soils are rated and placed into groups ranging from the best to the least suited for a specific agricultural use, such as cropland, forestland, or rangeland. Then, a relative value is determined for each group. For example, the best group may be assigned a value of 100, while all other groups are assigned lower values. The land evaluation is based on data from the National Cooperative Soil Survey often called the largest and most valuable natural resource database in the world.</attrdef>
                <attrdefs>Crawford County Conservation District</attrdefs>
                <attrdomv>
                    <rdom>
                        <rdommin>0</rdommin>
                        <rdommax>100</rdommax>
                    </rdom>
                </attrdomv>
            </attr>
            <attr>
                <attrlabl>HYDRIC_CRITERIA_MET</attrlabl>
                <attrdef>The three essential characteristics of wetlands are hydrophytic vegetation, hydric soils, and wetland hydrology (Cowardin and others, 1979; U.S. Army Corps of Engineers, 1987; National Research Council, 1995; Tiner, 1985).  Criteria for all of the characteristics must be met for areas to be identified as wetlands.  Undrained hydric soils that have natural vegetation should support a dominant population of ecological wetland plant species.  Hydric soils that have been converted to other uses should be capable of being restored to wetlands.

Hydric soils are defined by the National Technical Committee for Hydric Soils (NTCHS) as soils that formed under conditions of saturation, flooding, or ponding long enough during the growing season to develop anaerobic conditions in the upper part (Federal Register, 1994).  These soils, under natural conditions, are either saturated or inundated long enough during the growing season to support the growth and reproduction of hydrophytic vegetation.

The NTCHS definition identifies general soil properties that are associated with wetness. In order to determine whether a specific soil is a hydric soil or nonhydric soil, however, more specific information, such as information about the depth and duration of the water table, is needed.  Thus, criteria that identify those estimated soil properties unique to hydric soils have been established (Federal Register, 2002).  These criteria are used to identify map unit components that normally are associated with wetlands. The criteria used are selected estimated soil properties that are described in "Soil Taxonomy" (Soil Survey Staff, 1999) and "Keys to Soil Taxonomy" (Soil Survey Staff, 2006) and in the "Soil Survey Manual" (Soil Survey Division Staff, 1993).

If soils are wet enough for a long enough period of time to be considered hydric, they should exhibit certain properties that can be easily observed in the field.  These visible properties are indicators of hydric soils.  The indicators used to make onsite determinations of hydric soils are specified in "Field Indicators of Hydric Soils in the United States" (Hurt and Vasilas, 2006).

Hydric soils are identified by examining and describing the soil to a depth of about 20 inches.  This depth may be greater if determination of an appropriate indicator so requires.  It is always recommended that soils be excavated and described to the depth necessary for an understanding of the redoximorphic processes.  Then, using the completed soil descriptions, soil scientists can compare the soil features required by each indicator and specify which indicators have been matched with the conditions observed in the soil.  The soil can be identified as a hydric soil if at least one of the approved indicators is present.

Map units that are dominantly made up of hydric soils may have small areas, or inclusions, of nonhydric soils in the higher positions on the landform, and map units dominantly made up of nonhydric soils may have inclusions of hydric soils in the lower positions on the landform.

The criteria for hydric soils are represented by codes in the table (for example, 2). Definitions for the codes are as follows:
Criteria coded as 1 if all Histels except for Folistels, and Histosols except for Folists;

Criteria coded as 2 if soils in Aquic suborders, great groups, or subgroups, Albolls suborder, Historthels great group, Histoturbels great group, Pachic subgroups, or Cumulic subgroups that: (1) based on the range of characteristics for the soil series, will at least in part meet one or more Field Indicators of Hydric Soils in the United States, or (2) show evidence that the soil meets the definition of a hydric soil;

Criteria coded as 3 for soils that are frequently ponded for long or very long duration during the growing season: (1) based on the range of characteristics for the soil series, will at least in part meet one or more Field Indicators of Hydric Soils in the United States, or (2) show evidence that the soil meets the definition of a hydric soil; and

Criteria coded as 4 if Map Unit components that are frequently flooded for long duration or very long duration during the growing season that: (1) based on the range of characteristics for the soil series, will at least in part meet one or more Field Indicators of Hydric Soils in the United States, or (2) show evidence that the soil meets the definition of a hydric soil. </attrdef>
                <attrdefs>United States Department of Agriculture - Natural Resources Conservations Service - National Technical Committee for Hydric Soils (NTCHS)</attrdefs>
                <attrdomv>
                    <edom>
                        <edomv>1</edomv>
                        <edomvd>Criteria coded as 1 if all Histels except for Folistels, and Histosols except for Folists (Values can include either a no code, a single code, or multiple codes).  </edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service - National Technical Committee for Hydric Soils (NTCHS)</edomvds>
                    </edom>
                    <edom>
                        <edomv>2</edomv>
                        <edomvd>Criteria coded as 2 if soils in Aquic suborders, great groups, or subgroups, Albolls suborder, Historthels great group, Histoturbels great group, Pachic subgroups, or Cumulic subgroups that: (1) based on the range of characteristics for the soil series, will at least in part meet one or more Field Indicators of Hydric Soils in the United States, or (2) show evidence that the soil meets the definition of a hydric soil (Values can include either a no code, a single code, or multiple codes).  </edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service - National Technical Committee for Hydric Soils (NTCHS)</edomvds>
                    </edom>
                    <edom>
                        <edomv>3</edomv>
                        <edomvd>Criteria coded as 3 for soils that are frequently ponded for long or very long duration during the growing season: (1) based on the range of characteristics for the soil series, will at least in part meet one or more Field Indicators of Hydric Soils in the United States, or (2) show evidence that the soil meets the definition of a hydric soil (Values can include either a no code, a single code, or multiple codes).  </edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service - National Technical Committee for Hydric Soils (NTCHS)</edomvds>
                    </edom>
                    <edom>
                        <edomv>4</edomv>
                        <edomvd>Criteria coded as 4 if Map Unit components that are frequently flooded for long duration or very long duration during the growing season that: (1) based on the range of characteristics for the soil series, will at least in part meet one or more Field Indicators of Hydric Soils in the United States, or (2) show evidence that the soil meets the definition of a hydric soil (Values can include either a no code, a single code, or multiple codes).  </edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service - National Technical Committee for Hydric Soils (NTCHS)</edomvds>
                    </edom>
                </attrdomv>
                <attrtype>String</attrtype>
                <attwidth>255</attwidth>
                <attalias>Hydric Criteria Met</attalias>
                <atprecis Sync="TRUE">0</atprecis>
                <attscale Sync="TRUE">0</attscale>
            </attr>
            <attr>
                <attrlabl>SMALL_COMMERCIAL_BUILDINGS</attrlabl>
                <attrdef>Soil properties influence the development of building sites, including the selection of the site, the design of the structure, construction, performance after construction, and maintenance.  This field indicates the degree and kind of soil limitations that affect dwellings and small commercial buildings.

Small commercial buildings are structures that are less than three stories high and do not have basements. The foundation is assumed to consist of spread footings of reinforced concrete built on undisturbed soil at a depth of 2 feet or at the depth of maximum frost penetration, whichever is deeper. The ratings are based on the soil properties that affect the capacity of the soil to support a load without movement and on the properties that affect excavation and construction costs. The properties that affect the load-supporting capacity include depth to a water table, ponding, flooding, subsidence, linear extensibility (shrink-swell potential), and compressibility (which is inferred from the Unified classification). The properties that affect the ease and amount of excavation include flooding, depth to a water table, ponding, slope, depth to bedrock or a cemented pan, hardness of bedrock or a cemented pan, and the amount and size of rock fragments.

Rating class terms indicate the extent to which the soils are limited by all of the soil features that affect building site development.  Not limited indicates that the soil has features that are very favorable for the specified use.  Good performance and very low maintenance can be expected.  Somewhat limited indicates that the soil has features that are moderately favorable for the specified use.  The limitations can be overcome or minimized by special planning, design, or installation.  Fair performance and moderate maintenance can be expected.  Very limited indicates that the soil has one or more features that are unfavorable for the specified use.  The limitations generally cannot be overcome without major soil reclamation, special design, or expensive installation procedures.  Poor performance and high maintenance can be expected.

Information in this field is intended for land use planning, for evaluating land use alternatives, and for planning site investigations prior to design and construction. The information, however, has limitations.  For example, estimates and other data generally apply only to that part of the soil between the surface and a depth of 5 to 7 feet.  Because of the map scale, small areas of different soils may be included within the mapped areas of a specific soil.

The information is not site specific and does not eliminate the need for onsite investigation of the soils or for testing and analysis by personnel experienced in the design and construction of engineering works.

Government ordinances and regulations that restrict certain land uses or impose specific design criteria were not considered in preparing the information in this field.  Local ordinances and regulations should be considered in planning, in site selection, and in design.</attrdef>
                <attrdefs>United States Department of Agriculture - Natural Resources Conservations Service</attrdefs>
                <attrdomv>
                    <edom>
                        <edomv>Not rated</edomv>
                        <edomvd>Soils map unit has not been rated. </edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Not limited</edomv>
                        <edomvd>Indicates that the soil has features that are very favorable for the specified use.  Good performance and very low maintenance can be expected.</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
                    </edom>
                    <edom>
                        <edomv>Somewhat limited</edomv>
                        <edomvd>Indicates that the soil has features that are moderately favorable for the specified use.  The limitations can be overcome or minimized by special planning, design, or installation.  Fair performance and moderate maintenance can be expected.</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
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                    <edom>
                        <edomv>Very limited</edomv>
                        <edomvd>Indicates that the soil has one or more features that are unfavorable for the specified use.  The limitations generally cannot be overcome without major soil reclamation, special design, or expensive installation procedures.  Poor performance and high maintenance can be expected.</edomvd>
                        <edomvds>United States Department of Agriculture - Natural Resources Conservations Service</edomvds>
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                </attrdomv>
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                <attscale Sync="TRUE">0</attscale>
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    <mdHrLvName Sync="TRUE">dataset</mdHrLvName>
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                <efeageom Sync="TRUE" code="4"/>
                <esritopo Sync="TRUE">FALSE</esritopo>
                <efeacnt Sync="TRUE">0</efeacnt>
                <spindex Sync="TRUE">TRUE</spindex>
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        <maintFreq>
            <MaintFreqCd value="011"/>
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        <maintCont>
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            <rpOrgName>Crawford County Government</rpOrgName>
            <rpCntInfo>
                <cntPhone>
                    <voiceNum tddtty="">814-333-7341</voiceNum>
                </cntPhone>
                <cntAddress addressType="physical">
                    <delPoint>903 Diamond Park</delPoint>
                    <city>Meadville</city>
                    <adminArea>Pennsylvania</adminArea>
                    <postCode>16335</postCode>
                    <country>US</country>
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