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Defining and characterizing Mesaverde and Mancos Sandstone reservoirs based on interpretation of image logs, eastern Uinta Basin (OFR-458)Vendor: Utah Geological SurveyBy: M. W. Longman and R. J. Koepsell This DVD is an FMI© “image atlas†tied to text describing key features and reservoir potential of the Upper Cretaceous Mesaverde Group in the area of Natural Buttes field, Uinta Basin, Utah. This report is based...
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Paleoseismology of Utah, Volume 9: Paleoseismic investigation of the Clarkston, Junction Hills, and Wellsville faults, West Cache fault zone, Cache County, Utah (SS-98)Vendor: Utah Geological SurveyBy: B. D. Black, R. E. Giraud, and B. H. Mayes This Utah Geological Survey Special Study, Paleoseismic Investigation of the Clarkston, Junction Hills, and Wellsville faults, West Cache fault zone, Cache County, Utah, is the ninth report in the Paleoseismology of Utah Special...
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Hydrogeology of the Malad-Lower Bear River Basin, North-Central Utah and South-Central Idaho (SS-157)Vendor: Utah Geological SurveyBy: Hugh HurlowThis report characterizes the lithology of the younger (i.e., Quaternary) basin fill of the Malad–Lower Bear River basin in north-central Utah to provide a geologic framework for evaluation of groundwater flow and the potential effects of additional future groundwater pumping. Analysis of...
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Aquifer Storage and Recovery in Millville, Cache County, Utah (RI-275)Vendor: Utah Geological SurveyBy: Paul InkenbrandtThis study is an investigation of the feasibility of an aquifer storage and recovery project using the existing water supply infrastructure of the city of Millville, Utah. The project involved injecting water from a public water supply spring into a public water...
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Radon Hazard Potential Map of Southern Davis County, Utah (OFR-655)Vendor: Utah Geological SurveyBy: Jessica J. Castleton, Ben A. Erickson, and Emily J. KleberAs requested by the Davis County Health Department, the Utah Geological Survey has mapped radon hazard potential for southern Davis County, Utah. This 1:24,000-scale map covers the southern portion of Davis County, including the...
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Utahs Extractive Resource Industries 2011 (C-115)Vendor: Utah Geological SurveyBy: Taylor Boden, Michael Vanden Berg, Ken Krahulec, Dave Tabet, and Mark GwynnOther Information:Published: 2012Pages: 27Location: Utah Media Type: Paper Publication
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Selected Topics In Engineering And Environmental Geology In Utah (UGA-41)Vendor: Utah Geological AssociationBy: Edited by Michael D. Hylland and Kimm M. Harty This publications includes the subjects of Geologic Hazards, Hydrogeology, Field Trip Guides, and Related Topics GEOLOGIC HAZARDS Instrumentally Recorded Ground Motions in the Utah Region Since 2000 by Kristine L. Pankow Landslide Distribution and...
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Landslide Inventory Map of the 2012 Seeley Fire Area, Carbon and Emery Counties, Utah (SS-153)Vendor: Utah Geological SurveyBy: Greg N. McDonald and Richard E. Giraud This map presents a landslide inventory for the 2012 Seeley fire area, Carbon and Emery Counties, Utah, at a scale of 1:24,000. The purposes of the map and accompanying geodatabase are to show and characterize landslides...
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Landslide Inventory Seeley Fir (OFR-611)Vendor: Utah Geological SurveyThe Utah Geological Survey Open-File Report 611 was compiled by William R. Lund, who served as the coordinator for the Working Group on Utah Earthquake Probabilities (WGUEP). Lund, a senior scientist with the Utah Geological Survey, led the collaborative effort to provide updated fault...
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The geology of the Kamas-Coalville region, Summit County, Utah, and its relation to ground-water conditions (WRB-29)Vendor: Ground WaterBy: H. A. Hurlow, editor The Kamas-Coalville region is in the Middle Rocky Mountains physiographic province, about 30 miles east of the Wasatch Front urban area. Rapid population growth and increased water use are the impetus for a collaborative study of water resources in...
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Analysis of septic-tank density for three areas in Cedar Valley, Iron County, Utah - a case study for evaluations or proposed subdivisions in Cedar Valley (WRB-27)Vendor: Utah Geological SurveyBy: M. Lowe, J. Wallace, and C. E. Bishop, editors Cedar Valley, Iron County, is experiencing an increase in residential development, much of which uses septic tank soil-absorption systems for wastewater disposal. Septic tank soil-absorption systems are considered one of the major potential sources...
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Programs and abstracts for 1982 symposium on the Overthrust Belt of Utah (UGA-11)Vendor: Utah Geological AssociationEdited by: T. L. BrittThis publication lists the program and abstracts from the 1982 Symposium on the Overthrust Belt of Utah. The abstracts included in this publication are listed below:Discarded theories are essential to progress - examples from western geology, by W. L. StokesHistory...
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Tintic special folio, Utah (Tintic)Vendor: Utah Geological SurveyBy: G. W. Tower, Jr.Contains a digital version of the Tintic Special Folio, Utah published in 1900 by the United States Geological Survey as Geologic Atlas of the United States: Tintic Special Folio, Utah folio 65. The topographic sheet was culturally updated to 1911...
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Radon-hazard potential of Beaver basin area, Beaver County, Utah (SS-94)Vendor: Utah Geological SurveyBy: C. E. Bishop Indoor-radon levels in the Beaver basin of southwestern Utah are the highest recorded to date in Utah. Measured indoor-radon concentrations range from 17.5 to 495pCi/L. These levels are well above those considered a health risk by the U.S. Environmental Protection...
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Paleoseismology of Utah, Volume 8: Paleoseismic investigation at Rock Canyon, Provo segment, Wasatch fault zone, Utah County, Utah (SS-93)Vendor: Utah Geological SurveyBy: W. R. Lund and B. D. Black This Utah Geological Survey Special Study, Paleoseismic Investigation at Rock Canyon, Provo Segment, Wasatch Fault Zone, Utah County, Utah, is the eighth report in the Paleoseismology of Utah Special Studies series. This series makes the results...
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Paleoseismology of Utah, Volume 7: Paleoseismic investigation on the Salt Lake City segment of the Wasatch fault zone at the South Fork Dry Creek and Dry Gulch sites, Salt Lake County, Utah (SS-92)Vendor: Utah Geological SurveyBy: B. D. Black, W. R. Lund, D. P. Schwartz, H. E. Gill, and B. H. Mayes This Utah Geological Survey Special Study, Paleoseismic Investigation on the Salt Lake City Segment of the Wasatch Fault Zone at the South Fork Dry Creek and Dry...
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Radon-hazard potential of western Salt Lake Valley, Salt Lake County, Utah (SS-91)Vendor: Utah Geological SurveyBy: B. D. Black Radon is a radioactive gas of geologic origin that is an environmental concern because of its link to lung cancer. Radon is derived from the decay of uranium and can accumulate indoors in sufficient quantities to pose a health hazard...
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Radon-hazard potential of the lower Weber River area, Tooele Valley, and southeastern Cache Valley, Cache, Davis, Tooele, and Weber Counties, Utah (SS-90)Vendor: Utah Geological SurveyBy: B. D. Black and B. J. Solomon Radon is a radioactive gas of geologic origin that is an environmental concern because of its link to lung cancer. Radon is derived from the decay of uranium, and can accumulate indoors in sufficient quantities to...
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Radon-hazard potential of the central Sevier Valley, Sevier County, Utah (SS-89)Vendor: Utah Geological SurveyBy: B. J. Solomon Radon, a radioactive gas derived from the decay of uranium, occurs naturally in rock and soil. The gas migrates through the ground and, after penetrating foundation openings, can accumulate indoors in sufficient quantities to cause lung cancer. Both non-geologic and...
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Paleoseismology of Utah, Volume 6: The Oquirrh fault zone, Tooele County, Utah: a surficial geology and paleoseismicity (SS-88)Vendor: Utah Geological SurveyBy: W. R. Lund, editor This Utah Geological Survey Special Study, The Oquirrh Fault Zone, Tooele County, Utah: Surficial Geology and Paleoseismicity, is the sixth report in the Paleoseismology of Utah series. This series makes the results of paleoseismic investigations in Utah available to...
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