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<idAbs>&lt;DIV STYLE="text-align:Left;"&gt;&lt;DIV&gt;&lt;DIV&gt;&lt;P&gt;&lt;SPAN&gt;These data contain 1:100,000-scale polygons defining the extent and label of each geologic unit. The label is an abbreviation that represents the age, lithology, and name of a geologic unit. This feature class is part of a geodatabase that contains statewide 1:100,000-scale geology data for Washington State.&lt;/SPAN&gt;&lt;/P&gt;&lt;/DIV&gt;&lt;/DIV&gt;&lt;/DIV&gt;</idAbs>
<idPurp>This dataset portrays the geology of Washington State at a scale of 1:100,000 (1 inch equals approximately 1.58 miles). The purpose is to make the geology of the state available as a seamless dataset for use in regional spatial analyses and other digital applications and for providing a framework for planning and land management and evaluating geologic hazards and resources. It was prepared in cooperation with the U. S. Geological Survey (USGS) National Geologic Mapping Program.</idPurp>
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<resTitle>Jackson, Julia A. (ed.), Mehl, James P., Jr. (ed.), Neuendorf, Klaus K. E. (ed.), 2005, Glossary of Geology; 5th ed.: American Geological Institute, 779 p.</resTitle>
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<useLimit>This digital data and metadata, (hereinafter collectively referred to as the "information"), are provided on an "AS IS", "AS AVAILABLE" and "WITH ALL FAULTS" basis. Neither Department of Natural Resources nor any of its officials and employees makes any warranty of any kind for this information, express or implied, including but not limited to any warranties of merchantability or fitness for a particular purpose, nor shall the distribution of this information constitute any warranty. The information is collected from various sources and will change over time without notice. DNR and its officials and employees assume no responsibility or legal liability for the accuracy, completeness, reliability, timeliness, or usefulness of any of the information provided nor do they represent that the use of any of the information will not infringe privately owned rights. The information is not intended to constitute advice nor is it to be used as a substitute for specific advice from a licensed professional. You should not act (or refrain from acting) based upon the information without independently verifying the information and, as necessary, obtaining professional advice regarding your particular facts and circumstances. References to any specific commercial product, process, and service by trade name, trademark, or manufacturer do not constitute or imply endorsement, recommendation, or favoring by DNR and its officials and employees. IN NO EVENT WILL DNR BE LIABLE TO YOU OR ANY THIRD PARTY FOR ANY DAMAGES ARISING OUT OF THE USE OF OR INABILITY TO USE THE DIGITAL DATA, EVEN IF DNR IS ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.</useLimit>
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<useLimit>&lt;DIV STYLE="text-align:Left;"&gt;&lt;DIV&gt;&lt;DIV&gt;&lt;P&gt;&lt;SPAN&gt;The Washington Division of Geology and Earth Resources (DGER) shall not be held liable for improper or incorrect use of the data described and/or contained herein. This product is provided 'as is' without warranty of any kind, either expressed or implied, including, but not limited to, the implied warranties of merchantability and fitness for a particular use. The Washington State Department of Natural Resources and the authors of this product will not be liable to the user of this product for any activity involving the product with respect to the following: (a) lost profits, lost savings, or any other consequential damages; (b) the fitness of the product for a particular purpose; or (c) use of the product or results obtained from use of the product. Although these data have been processed successfully on computers of DGER, no warranty, expressed or implied, is made by DGER regarding the use of these data on any other system, nor does the fact of distribution constitute or imply any such warranty.&lt;/SPAN&gt;&lt;/P&gt;&lt;/DIV&gt;&lt;/DIV&gt;&lt;/DIV&gt;</useLimit>
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<suppInfo>The Division of Geology and Earth Resources successfully completed statewide 1:100,000-scale digital geologic coverage of Washington in 2000. The focus of this project originally was on the production of a geologic database in ARC/INFO coverage format. In order to make these data more widely usable, we have merged the quadrangle-based coverages into a statewide database, which was then converted into ESRI shapefiles followed by importing to a geodatabase that can be used in a variety of geographic information systems (GIS) applications. This dataset was tailored for use at a scale of 1:100,000; use at larger scales would be inappropriate.</suppInfo>
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<useLimit>The Washington Division of Geology and Earth Resources (DGER) shall not be held liable for improper or incorrect use of the data described and/or contained herein. This product is provided 'as is' without warranty of any kind, either expressed or implied, including, but not limited to, the implied warranties of merchantability and fitness for a particular use. The Washington State Department of Natural Resources and the authors of this product will not be liable to the user of this product for any activity involving the product with respect to the following: (a) lost profits, lost savings, or any other consequential damages; (b) the fitness of the product for a particular purpose; or (c) use of the product or results obtained from use of the product. Although these data have been processed successfully on computers of DGER, no warranty, expressed or implied, is made by DGER regarding the use of these data on any other system, nor does the fact of distribution constitute or imply any such warranty.</useLimit>
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<measDesc>All polygons close. No duplicate features exist in the theme. Arc-node and polygon topology is maintained by ESRI ArcGIS software and is error free with respect to that software.</measDesc>
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<measDesc>The completeness of the data reflects the content of the field work and the sources. Features found on the ground may have been eliminated or generalized on the source graphic because of scale and legibility constraints.</measDesc>
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<measDesc>All attributes were visually checked against the author's materials and plots of the digital data were compared with the original scale-stable author's materials to ensure correctness and consistency of feature attributes.</measDesc>
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<measDesc>Positions of features (polygons of geologic units) are constrained by and generated from the positions of contacts and faults that are portrayed in contact_100k and fault_100k and their positional accuracy is essentially the same as for those features in there two feature classes. Features mapped in the field were positioned on a 1:100,000-scale base map in the field by noting the position of the feature with reference to nearby features that could be identified on the base map. Features compiled from existing geologic maps were positioned by noting their position with reference to features that could be identified on both the source map and the 1:100,000-scale base map. Thus the positions are as accurate as the portrayal of identifiable topographic or cultural features allowed. The features were transferred to or recorded on scale-stable overlays to scale-stable copies of the 1:100,000-scale base maps. The overlays were georeferenced in ArcInfo using the four corners for control, usually to an RMS error of 0.003 or better, and the features digitized as accurately as the digitizing table "puck" crosshairs could be positioned over the feature, typically with the use of a magnifying lens. Plots of the digital data were compared with the author's original scale-stable materials to ensure correctness of position.</measDesc>
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<stepDesc>The process the Division of Geology and Earth Resources used to create 1:100,000-scale digital geology of Washington State initially consisted of making a set of ArcInfo coverages for each 1:100,000-scale quadrangle in Washington. These coverages were digitized from scale-stable Mylar geologic maps that had been compiled by Division of Geology and Earth Resources staff or scale-stable geologic maps or ArcInfo coverages compiled by staff of the U.S. Geological Survey. The individual quadrangle coverages were then combined to form a set of statewide ArcInfo coverages. Since then we have converted the statewide ArcInfo coverages to ESRI shapefiles, revised the data structure, and performed topology and projection checks. Our next step was to again revise and improve the data structure and import the shapefiles into a geodatabase. This dataset underwent extensive attributing and editing of the geologic features and various check plots were prepared and proofread in order to verify the locational accuracy of the features and to check for any errors in attributes. Additional checks for attribute errors were made on the computer workstation. Version History Version 3.1 (November, 2016): Each feature class in the 100k geologic database was reviewed in a thorough QAQC process. A number of errors in the attribution, location, and digitizing direction of features were identified and corrected. Connected line features with identical coding that represent the same geologic features (usually contacts or faults) were merged. Replaced contents of Tacoma quadrangle with Schuster and others (2015) digital mapping. Version 3.0 (June, 2010): The entire surface geology 100k dataset was migrated from shapefiles to a geodatabase. Feature class names and attribute names were changed, and metadata for the entire dataset was updated. Version 2.0 (September, 2008) Editing was done on gunitl100k.shp where numerous duplicate arcs were removed and coding on faults was corrected. In version 1.0, gunitl100k.shp had many duplicate faults and coding errors. Three fields were added and attributed to gdate100k.shp, gline100k.shp, gpoint100,.shp, and gunitp100k.shp. These fields contain the age, lithology, and named units of the geologic polygons. In gpoint100k.shp, GPOINT_CD was incorrect in version 1.0 and this has been corrected. Empty fields were deleted in gdate100k.shp (REM_TXT and LABEL_TXT), gdike100k.shp (DIKE_NM), gfold100k.shp (FOLD_NM), gline100k.shp (REM_TXT), gpoint100k.shp (LABEL_TXT and REM_TXT), and gunitl100k.shp (FAULT_NM). Unneeded fields were deleted from both gdate100k.shp and gpoint100k.shp (SITE_NO). Metadata for the entire dataset was updated. Version 1.0 (December, 2005) Original 1:100,000-scale coverages were merged into a statewide shapefile.</stepDesc>
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<srcDesc>The individual 1:100,000-scale quadrangles provided geologic information that was brought into a seamless statewide shapefile. Then the shapefile was imported into a geodatabase.</srcDesc>
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<GeoObjTypCd Sync="TRUE" value="002"/>
</geoObjTyp>
<geoObjCnt Sync="TRUE">482</geoObjCnt>
</geometObjs>
<topLvl>
<TopoLevCd Sync="TRUE" value="001"/>
</topLvl>
</VectSpatRep>
</spatRepInfo>
<eainfo>
<detailed Name="ENVIRONMENTAL__geology">
<enttyp>
<enttypl>geologic_unit_poly_100k</enttypl>
<enttypd>This dataset contains polygon information defining the extent and identity of geologic units.</enttypd>
<enttypds>Washington Division of Geology and Earth Resources</enttypds>
<enttypt Sync="TRUE">Feature Class</enttypt>
<enttypc Sync="TRUE">482</enttypc>
</enttyp>
<attr>
<attrlabl>Shape</attrlabl>
<attrdef>Feature geometry</attrdef>
<attrdefs>ESRI</attrdefs>
<attrdomv>
<udom>Coordinates defining the features</udom>
</attrdomv>
<attalias Sync="TRUE">Shape</attalias>
<attrtype Sync="TRUE">Geometry</attrtype>
<attwidth Sync="TRUE">4</attwidth>
<atprecis Sync="TRUE">0</atprecis>
<attscale Sync="TRUE">0</attscale>
</attr>
<attr>
<attrlabl>OBJECTID</attrlabl>
<attrdef>Internal feature number.</attrdef>
<attrdefs>ESRI</attrdefs>
<attrdomv>
<udom>Sequential unique whole numbers that are automatically generated.</udom>
</attrdomv>
<attalias Sync="TRUE">OBJECTID</attalias>
<attrtype Sync="TRUE">OID</attrtype>
<attwidth Sync="TRUE">4</attwidth>
<atprecis Sync="TRUE">10</atprecis>
<attscale Sync="TRUE">0</attscale>
</attr>
<attr>
<attrlabl>LITHOLOGY</attrlabl>
<attrdef>The LITHOLOGY field contains a description of the rock on the basis of rock type, such as sedimentary, volcanic, intrusive, and metamorphic, and subdivisions thereof. It may be a general classification, such as basalt, or a more detailed description of the specific characteristics of the rock in a particular polygon.</attrdef>
<attrdefs>Dictionary of Geological Terms</attrdefs>
<attrdomv>
<udom>Textual descriptions</udom>
</attrdomv>
<attalias Sync="TRUE">Lithology</attalias>
<attrtype Sync="TRUE">String</attrtype>
<attwidth Sync="TRUE">70</attwidth>
<atprecis Sync="TRUE">0</atprecis>
<attscale Sync="TRUE">0</attscale>
</attr>
<attr>
<attrlabl>NAMED_UNITS</attrlabl>
<attrdef>Geologists name rock units or formations after nearby places. Formation names can be formal or informal. The GEOLOGIC_UNIT_LABEL field gives the label applied to map units, which may be or include formal or informal formations or may describe an unconsolidated deposit, such as alluvium, landslides, or dikes. The NAMED_UNIT field lists the formal and informal named geologic units included in a particular map unit. It also gives references where applicable.</attrdef>
<attrdefs>Washington Division of Geology and Earth Resources.</attrdefs>
<attrdomv>
<udom>Textual descriptions</udom>
</attrdomv>
<attalias Sync="TRUE">Named Units</attalias>
<attrtype Sync="TRUE">String</attrtype>
<attwidth Sync="TRUE">70</attwidth>
<atprecis Sync="TRUE">0</atprecis>
<attscale Sync="TRUE">0</attscale>
</attr>
<attr>
<attrlabl>GEOLOGIC_AGE</attrlabl>
<attrdef>Relative or absolute age of the sample. The relative age is a geochronologic unit during which the rocks were formed according to the Geologic Time Scale (see http://pubs.usgs.gov/fs/2007/3015/fs2007-3015.pdf). A geochronologic unit is a division of time based on the rock record. In order of decreasing rank they are eon, era, period, epoch, and age. Most relative ages are given in terms of period and (or) epoch. For the Cenozoic era, the age is usually given as either the period (Quaternary or Tertiary) or epoch (Holocene, Pleistocene, or Miocene, for example). For the Mesozoic and Paleozoic, the age is given either as the period (Jurassic) or the epoch (usually Late, Middle or Early) followed by the period (Early Cretaceous or Late Triassic, for example). Absolute age consists of a number followed by a unit and is an estimation the number of years since the rock formed. A +/- gives the margin of error. For example, the entry '140.0+/-4.2 my' means that the rock is estimated to be 140,000,000 years old, but there could be an error of as much as 4,200,000 years either way. Additional information may be given on the dating method used to arrive at the age (for example, fission track, UPb, hornblende, or biotite).</attrdef>
<attrdefs>Washington Division of Geology and Earth Resources.</attrdefs>
<attrdomv>
<udom>Textual descriptions</udom>
</attrdomv>
<attalias Sync="TRUE">Geologic Age</attalias>
<attrtype Sync="TRUE">String</attrtype>
<attwidth Sync="TRUE">30</attwidth>
<atprecis Sync="TRUE">0</atprecis>
<attscale Sync="TRUE">0</attscale>
</attr>
<attr>
<attrlabl>GEOLOGIC_UNIT_LABEL</attrlabl>
<attrdef>Geologic unit polygon label. Geologic units may be broken out by age and lithology, formation, or terrane. Each unit is identified by a unit label. Unit labels are abbreviations that represent the age, lithology, and name of a geologic unit. Unit labels consist of uppercase letter(s) denoting age (youngest first if the age is compound), followed by lowercase letters showing first the general lithologic subdivision, then detailed lithologic information. For example, KJigb is the label for Cretaceous to Jurassic intrusive gabbro. If the age is "pre", as in pre-Cretaceous, the "p" representing "pre" is lowercase. Subscripts (indicated by parentheses) are used to represent formal or informal formation names. For example, the label for the Miocene (volcanic) Grande Ronde Basalt is Mv(g). The age of metamorphosed units is the protolith age, not the age of metamorphism. Most of our age labels are based on standard U.S. Geological Survey age symbols, but because of the prevalence of Tertiary rocks in Washington, each Tertiary epoch has been assigned a separate age symbol. These Tertiary symbols differ somewhat from those previously used by the USGS: E = Eocene, M = Miocene, O = Oligocene, PA = Paleocene, and PL = Pliocene. Symbols used for other geologic time units are: C = Cambrian, K = Cretaceous, J = Jurassic, Mz = Mesozoic, P = Pennsylvanian, Pz = Paleozoic, Q = Quaternary, and TR = Triassic.</attrdef>
<attrdefs>Washington Division of Geology and Earth Resources.</attrdefs>
<attrdomv>
<udom>Textual descriptions</udom>
</attrdomv>
<attalias Sync="TRUE">Geologic Unit Label</attalias>
<attrtype Sync="TRUE">String</attrtype>
<attwidth Sync="TRUE">12</attwidth>
<atprecis Sync="TRUE">0</atprecis>
<attscale Sync="TRUE">0</attscale>
</attr>
<attr>
<attrlabl Sync="TRUE">AGE_LITHOLOGY</attrlabl>
<attalias Sync="TRUE">Symbology</attalias>
<attrtype Sync="TRUE">String</attrtype>
<attwidth Sync="TRUE">100</attwidth>
<atprecis Sync="TRUE">0</atprecis>
<attscale Sync="TRUE">0</attscale>
<attrdef>Concatenation of a generalized age and lithology used to determine the map symbold applied to the polygon.</attrdef>
<attrdefs>Washington Division of Geology and EarthResources</attrdefs>
</attr>
<attr>
<attrlabl Sync="TRUE">Shape.STArea()</attrlabl>
<attalias Sync="TRUE">Shape.STArea()</attalias>
<attrtype Sync="TRUE">Double</attrtype>
<attwidth Sync="TRUE">0</attwidth>
<atprecis Sync="TRUE">0</atprecis>
<attscale Sync="TRUE">0</attscale>
</attr>
<attr>
<attrlabl Sync="TRUE">Shape.STLength()</attrlabl>
<attalias Sync="TRUE">Shape.STLength()</attalias>
<attrtype Sync="TRUE">Double</attrtype>
<attwidth Sync="TRUE">0</attwidth>
<atprecis Sync="TRUE">0</atprecis>
<attscale Sync="TRUE">0</attscale>
</attr>
</detailed>
</eainfo>
<mdHrLvName Sync="TRUE">dataset</mdHrLvName>
<refSysInfo>
<RefSystem>
<refSysID>
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<idVersion Sync="TRUE">5.3(9.0.0)</idVersion>
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<esritopo Sync="TRUE">FALSE</esritopo>
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<linrefer Sync="TRUE">FALSE</linrefer>
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</spdoinfo>
<mdMaint>
<maintFreq>
<MaintFreqCd value="009"/>
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</mdMaint>
<Binary>
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