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<pubDate>2026-03-02</pubDate>
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<rpOrgName>Benjamin J. Drenth</rpOrgName>
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<otherCitDet>Additional information about Originators: Benjamin J. Drenth, https://orcid.org/0000-0002-3954-8124; Philip J. Brown, https://orcid.org/0000-0002-2415-7462; Dylan M. Connell, https://orcid.org/0000-0001-8678-2776.
Suggested Citation: Drenth, B.J., Brown, P.J., Connell, D.M., 2025, Airborne magnetic and radiometric survey, Hartville Uplift and Shirley Mountains regions, Wyoming, 2025 : U.S. Geological Survey data release, https://doi.org/10.5066/P1C7TJKK.</otherCitDet>
<collTitle>The Earth MappingResources Initiative (Earth MRI)</collTitle>
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<idAbs>This data release provides digital flight line data for a high-resolution airborne magnetic and radiometric survey over the Hartville Uplift and Shirley Mountains regions of Wyoming. The survey is split into two blocks, one covering the Hartville Uplift region (Block A), and the other covering the Shirley Mountains region (Block B). The airborne survey was mainly funded by the State of Wyoming, with a smaller contribution from the Earth Mapping Resources Initiative (Earth MRI). The survey was designed by the Wyoming State Geological Survey (WSGS) and contracted by the USGS. The survey was designed to meet complementary needs related to geologic mapping and characterization of mineral resource potential. A total of ca. 83,000 line km of magnetic and radiometric data were acquired over areas totaling ca. 15,000 km2. In the Hartville Uplift region (Block A), data were collected from a fixed-wing aircraft flown at a nominal terrain clearance of 100 meters (m) above topography along E-W flight lines spaced at 200 m intervals. Tie lines were flown in an N-S direction every 2000 m. In the Shirley Mountains region (Block B), data were collected from a helicopter flown at a nominal terrain clearance of 100 meters (m) above topography along N-S flight lines spaced at 200 m intervals. Tie lines were flown in an E-W direction every 2000 m. Data were collected by NV5 Geospatial, Precision GeoSurveys, and EDCON-PRJ under contract to the USGS using aircraft with magnetometers mounted in stingers and fully calibrated gamma-ray spectrometers. The survey operated out of airports in Casper, Lusk, and Torrington, Wyoming, from May to July of 2025. Files that are available in this publication include flight line data for the magnetic and radiometric survey, and a report describing the survey parameters, field operations, quality control and data reduction procedures. A zip file is provided that contains the contractor's deliverable products that includes Geosoft databases and grids for the magnetic and radiometric survey and the report describing the survey and data reduction.</idAbs>
<idPurp>The Hartville Uplift-Shirley Mountains survey was designed to meet complementary needs related to geologic mapping and mineral resource research.</idPurp>
<idCredit>U.S. Geological Survey roles and contributions:
Scientist-In-Charge: Benjamin J. Drenth
Contract technical liaison: Dylan M. Connell
Survey design and coordination: Benjamin J. Drenth
Preliminary data quality assurance: Benjamin J. Drenth, Dylan M. Connell
Final data quality assurance: Philip J. Brown
Data preparation for release: Benjamin J. Drenth, Philip J. Brown
Metadata preparation for release: Philip J. Brown, Benjamin J. Drenth
Data and metadata review: Patricia G. MacQueen
Section 508 review: Maria R. Montour
Project Manager: Brent D. Marz
Funding: State of Wyoming and Earth Mapping Resources Initiative
Wyoming State Geological Survey roles and contributions
Survey design and coordination: Ranie M. Lynds, Patricia M. Webber
Contractor roles and contributions:
Contractors: NV5 Geospatial, Inc.; Precision GeoSurveys, Inc.; and EDCON-PRJ, Inc.
Please note that the contractors made no mention of specific project personnel and their roles in the report.</idCredit>
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<rpPosName>Research Geophysicist</rpPosName>
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<voiceNum>303-236-1827</voiceNum>
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<cntAddress addressType="both">
<delPoint>PO Box 25046, Mail Stop 973</delPoint>
<delPoint>Bldg 20, Denver Federal Center</delPoint>
<delPoint>W 6th Ave and Kipling St</delPoint>
<city>Denver</city>
<adminArea>CO</adminArea>
<postCode>80225-0046</postCode>
<country>US</country>
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<keyword>Pedro Mountains</keyword>
<keyword>Shirley Mountains</keyword>
<keyword>Medicine Bow National Forest</keyword>
<keyword>Routt National Forest</keyword>
<keyword>Platte County</keyword>
<keyword>Goshen County</keyword>
<keyword>Niobrara County</keyword>
<keyword>Albany County</keyword>
<keyword>Converse County</keyword>
<keyword>Natrona County</keyword>
<keyword>Carbon County</keyword>
<keyword>Little Medicine Bow River</keyword>
<keyword>Laramie River</keyword>
<keyword>North Platte River</keyword>
<keyword>Pathfinder Reservoir</keyword>
<keyword>Freezeout Mountains</keyword>
<keyword>Wildcat Hills</keyword>
<keyword>Wanker Hills</keyword>
<keyword>Haystack Range</keyword>
<keyword>Pedro Mountains</keyword>
<keyword>Rattlesnake Hills</keyword>
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<resTitle>Geographic Names Information System (GNIS), https://geonames.usgs.gov</resTitle>
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<placeKeys>
<keyword>United States</keyword>
<keyword>Wyoming</keyword>
<thesaName>
<resTitle>Common geographic areas</resTitle>
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<placeKeys>
<keyword>United States of America</keyword>
<keyword>USA</keyword>
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<keyword>Geophysics</keyword>
<keyword>Geospatial datasets</keyword>
<keyword>Magnetic field (earth)</keyword>
<keyword>Mineral Resources</keyword>
<keyword>Potassium</keyword>
<keyword>Sedimentology</keyword>
<keyword>Structural Geology</keyword>
<keyword>Thorium</keyword>
<keyword>Uranium</keyword>
<thesaName>
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<keyword>AASG</keyword>
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<keyword>Earth Mapping Resources Initiative</keyword>
<keyword>EarthMRI</keyword>
<keyword>GGGSC</keyword>
<keyword>Geology, Geophysics, and Geochemistry Science Center</keyword>
<keyword>MRP</keyword>
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<keyword>National Cooperative Geologic Mapping Program</keyword>
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<keyword>Geophysics</keyword>
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<keyword>Magnetic field (earth)</keyword>
<keyword>Mineral Resources</keyword>
<keyword>Potassium</keyword>
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<keyword>Niobrara County</keyword>
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<keyword>Natrona County</keyword>
<keyword>Carbon County</keyword>
<keyword>Little Medicine Bow River</keyword>
<keyword>Laramie River</keyword>
<keyword>North Platte River</keyword>
<keyword>Pathfinder Reservoir</keyword>
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<keyword>Wildcat Hills</keyword>
<keyword>Wanker Hills</keyword>
<keyword>Haystack Range</keyword>
<keyword>Pedro Mountains</keyword>
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<Consts>
<useLimit>These data are marked with a Creative Common CC0 1.0 Universal License. These data are in the public domain and do not have any use constraints. Users are advised to read the dataset's metadata thoroughly to understand appropriate use and data limitations.</useLimit>
</Consts>
</resConst>
<resConst>
<LegConsts>
<useLimit>Unless otherwise stated, all data, metadata and related materials are considered to satisfy the quality standards relative to the purpose for which the data were collected. Although these data and associated metadata have been reviewed for accuracy and completeness and approved for release by the U.S. Geological Survey (USGS), no warranty expressed or implied is made regarding the display or utility of the data on any other system or for general or scientific purposes, nor shall the act of distribution constitute any such warranty.</useLimit>
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<resTitle>National map of focus areas for potential critical mineral resources in the United States</resTitle>
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<pubDate>2023</pubDate>
</date>
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<rpOrgName>Hammarstrom, J.M</rpOrgName>
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</RoleCd>
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<citRespParty>
<rpOrgName>Woodruff, L.G</rpOrgName>
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</RoleCd>
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<GeoBndBox>
<exTypeCode>true</exTypeCode>
<westBL>-107.25752</westBL>
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<southBL>41.814355</southBL>
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<tmEnd>2025-09-29</tmEnd>
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<suppInfo>Files that are available in this publication include flight line data for the magnetic survey in ASCII CSV format, flight line data for the radiometric survey in ASCII CSV format, geoTIFF images of the total magnetic intensity and radiometric total count, potassium, thorium, and uranium values, grids of these data, and a report describing the survey parameters, field operations, quality control and data reduction procedures. A zip file containing the contractor's deliverable products is also included. These files are provided as received from the contractor. Binary files in this package are readable using the free software "Geosoft Viewer" (https://www.seequent.com/products-solutions/geosoft-viewer/) or commercial software "Oasis montaj".
AreaA_Boundary_Shapefiles.cpg
AreaA_Boundary_Shapefiles.dbf
AreaA_Boundary_Shapefiles.shp
AreaA_Boundary_Shapefiles.shx
AreaA_FlightPlan_ln.dbf
AreaA_FlightPlan_ln.prj
AreaA_FlightPlan_ln.shp
AreaA_FlightPlan_ln.shx
AreaB_Boundary_Shapefiles.cpg
AreaB_Boundary_Shapefiles.dbf
AreaB_Boundary_Shapefiles.shp
AreaB_Boundary_Shapefiles.shx
AreaB_FlightPlan_ln.dbf
AreaB_FlightPlan_ln.prj
AreaB_FlightPlan_ln.shp
AreaB_FlightPlan_ln.shx
Data Acquisition and Processing Report WY_HartvilleUpliftShirleyMountains_MAG_RAD_D25-508.pdf
Readme.xlsx
WY_HartvilleUpliftShirleyMountains_METADATA_BLOCK_A_Final.xlsx
WY_HartvilleUpliftShirleyMountains_METADATA_BLOCK_B_Final.xlsx
WY_Hartvilleuplift_area_A_K_V1.grd
WY_Hartvilleuplift_area_A_K_V1.grd.gi
WY_Hartvilleuplift_area_A_K_V1.grd.xml
WY_Hartvilleuplift_area_A_K_V1_COG.tif
WY_Hartvilleuplift_area_A_K_V1_COG.tif.gi
WY_Hartvilleuplift_area_A_K_V1_COG.tif.xml
WY_Hartvilleuplift_area_A_K_V1_RGB.tif
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WY_Hartvilleuplift_area_A_K_V1_RGB.tif.xml
WY_Hartvilleuplift_area_A_mag_csv_V1.csv
WY_Hartvilleuplift_area_A_mag_V1.gdb
WY_Hartvilleuplift_area_A_mag_V1.gdb.xml
WY_Hartvilleuplift_area_A_rtp_V1.grd
WY_Hartvilleuplift_area_A_rtp_V1.grd.gi
WY_Hartvilleuplift_area_A_rtp_V1.grd.xml
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WY_Hartvilleuplift_area_A_rtp_vd_V1_COG.tif
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WY_Hartvilleuplift_area_A_rtp_vd_V1_RGB.tif
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WY_Hartvilleuplift_area_A_rtp_vd_V1_RGB.tif.xml
WY_Hartvilleuplift_area_A_spec_csv_V1.csv
WY_Hartvilleuplift_area_A_spec_V1.gdb
WY_Hartvilleuplift_area_A_spec_V1.gdb.xml
WY_Hartvilleuplift_area_A_TC_V1.grd
WY_Hartvilleuplift_area_A_TC_V1.grd.gi
WY_Hartvilleuplift_area_A_TC_V1.grd.xml
WY_Hartvilleuplift_area_A_TC_V1_COG.tif
WY_Hartvilleuplift_area_A_TC_V1_COG.tif.gi
WY_Hartvilleuplift_area_A_TC_V1_COG.tif.xml
WY_Hartvilleuplift_area_A_TC_V1_RGB.tif
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WY_Hartvilleuplift_area_A_TC_V1_RGB.tif.xml
WY_Hartvilleuplift_area_A_Ternary_V1_RGB.tif
WY_Hartvilleuplift_area_A_Ternary_V1_RGB.tif.gi
WY_Hartvilleuplift_area_A_Ternary_V1_RGB.tif.xml
WY_Hartvilleuplift_area_A_Th_K_V1.grd
WY_Hartvilleuplift_area_A_Th_K_V1.grd.gi
WY_Hartvilleuplift_area_A_Th_K_V1.grd.xml
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WY_Hartvilleuplift_area_A_Th_K_V1_RGB.tif
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WY_Hartvilleuplift_area_A_Th_K_V1_RGB.tif.xml
WY_Hartvilleuplift_area_A_Th_V1.grd
WY_Hartvilleuplift_area_A_Th_V1.grd.gi
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WY_Hartvilleuplift_area_A_Th_V1_COG.tif
WY_Hartvilleuplift_area_A_Th_V1_COG.tif.gi
WY_Hartvilleuplift_area_A_Th_V1_COG.tif.xml
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WY_Hartvilleuplift_area_A_Th_V1_RGB.tif.xml
WY_Hartvilleuplift_area_A_tmi_V1.grd
WY_Hartvilleuplift_area_A_tmi_V1.grd.gi
WY_Hartvilleuplift_area_A_tmi_V1.grd.xml
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WY_Hartvilleuplift_area_A_tmi_V1_RGB.tif.xml
WY_Hartvilleuplift_area_A_tmi_vd_V1.grd
WY_Hartvilleuplift_area_A_tmi_vd_V1.grd.gi
WY_Hartvilleuplift_area_A_tmi_vd_V1.grd.xml
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WY_Hartvilleuplift_area_A_tmi_vd_V1_COG.tif.xml
WY_Hartvilleuplift_area_A_tmi_vd_V1_RGB.tif
WY_Hartvilleuplift_area_A_tmi_vd_V1_RGB.tif.gi
WY_Hartvilleuplift_area_A_tmi_vd_V1_RGB.tif.xml
WY_Hartvilleuplift_area_A_U_K_V1.grd
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WY_Hartvilleuplift_area_A_U_K_V1.grd.xml
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WY_Hartvilleuplift_area_A_U_K_V1_RGB.tif.xml
WY_Hartvilleuplift_area_A_U_Th_V1.grd
WY_Hartvilleuplift_area_A_U_Th_V1.grd.gi
WY_Hartvilleuplift_area_A_U_Th_V1.grd.xml
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WY_Hartvilleuplift_area_A_U_Th_V1_RGB.tif.xml
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WY_Hartvilleuplift_area_A_U_V1_RGB.tif.xml
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WY_Hartvilleuplift_area_B_K_COG.tif.xml
WY_Hartvilleuplift_area_B_K_RGB.prj
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WY_Hartvilleuplift_area_B_K_RGB.tif
WY_Hartvilleuplift_area_B_mag.csv
WY_Hartvilleuplift_area_B_mag.gdb
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WY_Hartvilleuplift_Area_B_readme.xlsx
WY_Hartvilleuplift_area_B_rtp.grd
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WY_Hartvilleuplift_area_B_rtp.grd.xml
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WY_Hartvilleuplift_area_B_rtpCOG.tif.xml
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WY_Hartvilleuplift_area_B_rtp_vdRGB.tif
WY_Hartvilleuplift_area_B_spec.csv
WY_Hartvilleuplift_area_B_spec.gdb
WY_Hartvilleuplift_area_B_spec.gdb.xml
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WY_Hartvilleuplift_area_B_tc_COG.tif
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WY_Hartvilleuplift_area_B_tc_COG.tif.xml
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WY_Hartvilleuplift_area_B_TC_RGB.tif
WY_Hartvilleuplift_area_B_ternary_RGB.prj
WY_Hartvilleuplift_area_B_ternary_RGB.tfw
WY_Hartvilleuplift_area_B_ternary_RGB.tif
WY_Hartvilleuplift_area_B_th.grd
WY_Hartvilleuplift_area_B_thk.grd
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WY_Hartvilleuplift_area_B_thk_COG.tif.gi
WY_Hartvilleuplift_area_B_thk_COG.tif.xml
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WY_Hartvilleuplift_area_B_th_COG.tif.xml
WY_Hartvilleuplift_area_B_Th_K_RGB.prj
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WY_Hartvilleuplift_area_B_Th_K_RGB.tif
WY_Hartvilleuplift_area_B_Th_RGB.prj
WY_Hartvilleuplift_area_B_Th_RGB.tfw
WY_Hartvilleuplift_area_B_Th_RGB.tif
WY_Hartvilleuplift_area_B_tmi.grd
WY_Hartvilleuplift_area_B_tmi.grd.gi
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WY_Hartvilleuplift_area_B_tmiCOG.tif
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WY_Hartvilleuplift_area_B_tmiRGB.prj
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WY_Hartvilleuplift_area_B_tmi_vd.grd
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WY_Hartvilleuplift_area_B_tmi_vdRGB.tif
WY_Hartvilleuplift_area_B_u.grd
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WY_Hartvilleuplift_area_B_uk.grd
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WY_Hartvilleuplift_area_B_ukCOG.tif.xml
WY_Hartvilleuplift_area_B_uth.grd
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WY_Hartvilleuplift_area_B_uthCOG.tif.xml
WY_Hartvilleuplift_area_B_U_K_RGB.prj
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WY_Hartvilleuplift_area_B_U_K_RGB.tif
WY_Hartvilleuplift_area_B_U_RGB.prj
WY_Hartvilleuplift_area_B_U_RGB.tfw
WY_Hartvilleuplift_area_B_U_RGB.tif
WY_Hartvilleuplift_area_B_U_Th_RGB.prj
WY_Hartvilleuplift_area_B_U_Th_RGB.tfw
WY_Hartvilleuplift_area_B_U_Th_RGB.tif
WY_Hartvilleuplift_readme.xlsx
This metadata describes the following files:
Footprint_AirborneMagneticAndRadiometricSurveyHartvilleUpliftAndShirleyMountainsRegionsWY2025.shp
Linepath_AirborneMagneticAndRadiometricSurveyHartvilleUpliftAndShirleyMountainsRegionsWY2025.shp
ParentThumb.png</suppInfo>
<envirDesc Sync="FALSE">Esri ArcGIS 13.6.0.59527</envirDesc>
<dataLang>
<languageCode Sync="TRUE" value="eng"/>
<countryCode Sync="TRUE" value="USA"/>
</dataLang>
<dataExt>
<geoEle>
<GeoBndBox esriExtentType="search">
<exTypeCode Sync="TRUE">1</exTypeCode>
<westBL Sync="TRUE">-107.260354</westBL>
<eastBL Sync="TRUE">-104.081099</eastBL>
<northBL Sync="TRUE">42.944029</northBL>
<southBL Sync="TRUE">41.805588</southBL>
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<dqInfo>
<dqScope>
<scpLvl>
<ScopeCd value="005">
</ScopeCd>
</scpLvl>
</dqScope>
<report type="DQQuanAttAcc">
<measDesc>Daily quality control of airborne survey data was performed by the contractor:
The data from each flight were reviewed in three stages by separate individuals. The data were first reviewed by the pilot and crew immediately after each flight. Then the data were downloaded from the onboard computer and uploaded via ftp to EDCON-PRJ's offices in Lakewood, Colorado for formal quality review. In Lakewood, each flight’s data were checked for uality by the staff of airborne data processors and geophysicists for EDCON-PRJ. The data were then compensated and corrected for diurnal activity using data collected from the base station magnetometers. Then the data were reviewed for flight line accuracy, GPS resolution, radar altimeter positioning, magnetometer noise levels, drape deviations, and spectrometer count levels, tuning, and resolution. Daily acquisition updates were forwarded via e-mail to the USGS staff. Two Geosoft databases for each block, one for magnetic data and one for radiometric data, were updated daily and posted to the USGS folder on EDCON-PRJ's ftp site for review.
Further quality control measures occurred post flight by the contractor and USGS scientist-in-charge before approval and acceptance of the final data. The data have been peer reviewed and compared with related ancillary data.</measDesc>
</report>
<report type="DQConcConsis">
<measDesc>Data were visually inspected for reasonableness and spatial consistency.</measDesc>
</report>
<report type="DQCompOm">
<measDesc>Data set is considered complete for the information presented, as described in the abstract. Users are advised to read the rest of the metadata record carefully for additional details.</measDesc>
</report>
<report dimension="horizontal" type="DQAbsExtPosAcc">
<measDesc>Field quality control and assurance procedures were undertaken by the NV5 Geospatial, Precision GeoSurveys, and EDCON-PRJ field crew and are described in the contractors report included with this data release.</measDesc>
</report>
<report dimension="vertical" type="DQAbsExtPosAcc">
<measDesc>Field quality control and assurance procedures were undertaken by the NV5 Geospatial, Precision GeoSurveys, and EDCON-PRJ field crew and are described in the contractors report included with this data release.</measDesc>
</report>
<dataLineage>
<prcStep>
<stepDesc>The airborne survey was flown under contract with NV5 Geospatial, Precision GeoSurveys, and EDCON-PRJ from May 16th, 2025, and July 7th, 2025.</stepDesc>
<stepDateTm>2025-07-06</stepDateTm>
</prcStep>
<prcStep>
<stepDesc>The survey data and report were delivered on September, 2025.</stepDesc>
<stepDateTm>2025-08-06</stepDateTm>
</prcStep>
<prcStep>
<stepDesc>Created Esri shapefiles of area footprint and line paths for the survey using the line data provided by the contractor.</stepDesc>
<stepDateTm>2025-09-25</stepDateTm>
</prcStep>
<prcStep>
<stepDesc>Final magnetic data were exported to CSV format with a defined null value (-99999) to meet open data requirements.</stepDesc>
<stepDateTm>2025-09-29</stepDateTm>
</prcStep>
<prcStep>
<stepDesc>Created georeferenced rasters of the data grids provided by the contractor.</stepDesc>
<stepDateTm>2025-11-19</stepDateTm>
</prcStep>
<prcStep>
<stepDesc>Final radiometric data were exported to CSV format with a defined null value (-99999) to meet open data requirements.</stepDesc>
<stepDateTm>2025-11-17</stepDateTm>
</prcStep>
</dataLineage>
</dqInfo>
<spatRepInfo>
<Indref>Wyoming</Indref>
<VectSpatRep>
<geometObjs Name="Footprint_AirborneMagneticAndRadiometricSurveyHartvilleUpliftAndShirleyMountainsRegionsWY2025">
<geoObjTyp>
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</geoObjTyp>
<geoObjCnt Sync="TRUE">2</geoObjCnt>
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</VectSpatRep>
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<eainfo>
<detailed Name="Footprint_AirborneMagneticAndRadiometricSurveyHartvilleUpliftAndShirleyMountainsRegionsWY2025">
<enttyp>
<enttypl>Footprint_AirborneMagneticAndRadiometricSurveyHartvilleUpliftAndShirleyMountainsRegionsWY2025.shp</enttypl>
<enttypd>Arc GIS Shape file containing a polygon "footprint" for the airborne data.</enttypd>
<enttypds>U.S. Geological Survey</enttypds>
<enttypt Sync="TRUE">Feature Class</enttypt>
<enttypc Sync="TRUE">2</enttypc>
</enttyp>
<attr>
<attrlabl>FID</attrlabl>
<attrdef>Fiducial number.</attrdef>
<attrdefs>U.S. Geological Survey</attrdefs>
<attrdomv>
<rdom>
<rdommin>0</rdommin>
<rdommax>1</rdommax>
<attrunit>None</attrunit>
</rdom>
<udom Sync="TRUE">Sequential unique whole numbers that are automatically generated.</udom>
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<attalias Sync="TRUE">FID</attalias>
<attrtype Sync="TRUE">OID</attrtype>
<attwidth Sync="TRUE">4</attwidth>
<atprecis Sync="TRUE">0</atprecis>
<attscale Sync="TRUE">0</attscale>
</attr>
<attr>
<attrlabl>Shape</attrlabl>
<attrdef>Definition of ESRI Arc GIS object</attrdef>
<attrdefs>U.S. Geological Survey</attrdefs>
<attrdomv>
<edom>
<edomv>Polygon</edomv>
<edomvd>object type</edomvd>
<edomvds>U.S. Geological Survey</edomvds>
</edom>
<udom Sync="TRUE">Coordinates defining the features.</udom>
</attrdomv>
<attalias Sync="TRUE">Shape</attalias>
<attrtype Sync="TRUE">Geometry</attrtype>
<attwidth Sync="TRUE">0</attwidth>
<atprecis Sync="TRUE">0</atprecis>
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</attr>
<attr>
<attrlabl>ID</attrlabl>
<attrdef>Index number ID for each row. Null Values are -99999.</attrdef>
<attrdefs>U.S. Geological Survey</attrdefs>
<attrdomv>
<rdom>
<rdommin>0</rdommin>
<rdommax>0</rdommax>
<attrunit>None</attrunit>
</rdom>
</attrdomv>
<attalias Sync="TRUE">ID</attalias>
<attrtype Sync="TRUE">Integer</attrtype>
<attwidth Sync="TRUE">8</attwidth>
<atprecis Sync="TRUE">8</atprecis>
<attscale Sync="TRUE">0</attscale>
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</detailed>
<detailed>
<enttyp>
<enttypl>Linepath_AirborneMagneticAndRadiometricSurveyHartvilleUpliftAndShirleyMountainsRegionsWY2025.shp</enttypl>
<enttypd>Arc GIS Shape file containing flight line paths for the airborne data.</enttypd>
<enttypds>U.S. Geological Survey</enttypds>
</enttyp>
<attr>
<attrlabl>FID</attrlabl>
<attrdef>Fiducial number.</attrdef>
<attrdefs>U.S. Geological Survey</attrdefs>
<attrdomv>
<rdom>
<rdommin>0</rdommin>
<rdommax>1327</rdommax>
<attrunit>None</attrunit>
</rdom>
</attrdomv>
</attr>
<attr>
<attrlabl>Shape</attrlabl>
<attrdef>Definition of ESRI Arc GIS object</attrdef>
<attrdefs>U.S. Geological Survey</attrdefs>
<attrdomv>
<edom>
<edomv>Polyline</edomv>
<edomvd>object type</edomvd>
<edomvds>U.S. Geological Survey</edomvds>
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</attr>
<attr>
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<attrdefs>U.S. Geological Survey</attrdefs>
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<rdom>
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<rdommax>636</rdommax>
<attrunit>None</attrunit>
</rdom>
</attrdomv>
</attr>
</detailed>
<overview>
<eaover>ParentThumb.png is a Portable Network Graphics (PNG) image associated with the data release.</eaover>
<eadetcit>https://doi.org/10.5066/P1C7TJKK</eadetcit>
</overview>
<overview>
<eaover>ContractorReport_AirborneMagneticAndRadiometricSurveyHartvilleUpliftAndShirleyMountainsRegionsWY2025.pdf is a Portable Network Graphics (PNG) image associated with the data release.</eaover>
<eadetcit>https://doi.org/10.5066/P1C7TJKK</eadetcit>
</overview>
<overview>
<eaover>ContractorDeliverables_AirborneMagneticAndRadiometricSurveyHartvilleUpliftAndShirleyMountainsRegionsWY2025.zip is the zip compressed Contactor Deliverables provided as an original data, as recieved, archive only. As such they are not described individually in the Entity and Attribute section of this metadata. The original contractor report and contractor provided ReadMe files are part of this zip package and contain the entity and attribute descriptions for all these files as received. The Contactor Deliverables zip file package contains the files, AreaA_Boundary_Shapefiles.cpg, AreaA_Boundary_Shapefiles.dbf, AreaA_Boundary_Shapefiles.shp, AreaA_Boundary_Shapefiles.shx, AreaA_FlightPlan_ln.dbf, AreaA_FlightPlan_ln.prj, AreaA_FlightPlan_ln.shp, AreaA_FlightPlan_ln.shx, AreaB_Boundary_Shapefiles.cpg, AreaB_Boundary_Shapefiles.dbf, AreaB_Boundary_Shapefiles.shp, AreaB_Boundary_Shapefiles.shx, AreaB_FlightPlan_ln.dbf, AreaB_FlightPlan_ln.prj, AreaB_FlightPlan_ln.shp, AreaB_FlightPlan_ln.shx, Data Acquisition and Processing Report WY_HartvilleUpliftShirleyMountains_MAG_RAD_D25-508.pdf, Readme.xlsx, WY_HartvilleUpliftShirleyMountains_METADATA_BLOCK_A_Final.xlsx, WY_HartvilleUpliftShirleyMountains_METADATA_BLOCK_B_Final.xlsx, WY_Hartvilleuplift_area_A_K_V1.grd, WY_Hartvilleuplift_area_A_K_V1.grd.gi, WY_Hartvilleuplift_area_A_K_V1.grd.xml, WY_Hartvilleuplift_area_A_K_V1_COG.tif, WY_Hartvilleuplift_area_A_K_V1_COG.tif.gi, WY_Hartvilleuplift_area_A_K_V1_COG.tif.xml, 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<eadetcit>https://doi.org/10.5066/P1C7TJKK</eadetcit>
</overview>
<overview>
<eaover>ContractorReport_AirborneMagneticAndRadiometricSurveyHartvilleUpliftAndShirleyMountainsRegionsWY2025.pdf is a contractor report in Adobe Portable Document Format (PDF). This report describes the airborne survey being released, including the survey parameters, field operations, quality control results, and data reduction procedures used to produce the data.</eaover>
<eadetcit>https://doi.org/10.5066/P1C7TJKK</eadetcit>
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