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NARROW
GeoRef Subject
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all geography including DSDP/ODP Sites and Legs
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Green River basin (3)
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North America
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Rocky Mountains
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Northern Rocky Mountains (1)
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U. S. Rocky Mountains
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Wind River Range (1)
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Sand Wash Basin (2)
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Sierra Madre (1)
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United States
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Colorado (2)
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U. S. Rocky Mountains
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Washakie Basin (5)
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Wyoming
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Great Divide Basin (15)
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commodities
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Tiffanian (2)
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Wasatch Formation (1)
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Chordata
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Vertebrata
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Tetrapoda
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Mammalia
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Theria
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stable isotopes
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Pb-208 (1)
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U-238/Pb-206 (1)
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Mesozoic
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Cretaceous
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Mancos Shale (1)
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Upper Cretaceous
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Fox Hills Formation (2)
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Lance Formation (2)
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Lewis Shale (3)
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Maestrichtian (1)
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Senonian (1)
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metal ores
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uranium ores (5)
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metals
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actinides
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thorium
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Th-232 (1)
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uranium
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U-235 (1)
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U-238/Pb-206 (1)
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lead
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Pb-207 (1)
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Pb-208 (1)
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U-238/Pb-206 (1)
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-
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mineral deposits, genesis (1)
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mineral exploration (2)
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mineral resources (1)
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noble gases
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radon (1)
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North America
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Rocky Mountains
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Northern Rocky Mountains (1)
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U. S. Rocky Mountains
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Wind River Range (1)
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paleoclimatology (1)
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petroleum (1)
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sea-level changes (2)
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sulfur
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tectonics (1)
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United States
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Colorado (2)
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Washakie Basin (5)
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Wyoming
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Campbell County Wyoming (1)
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Carbon County Wyoming (1)
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Fremont County Wyoming (3)
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Great Divide Basin (15)
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Hanna Basin (1)
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Johnson County Wyoming (1)
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Sweetwater County Wyoming (5)
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Wind River Range (1)
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well-logging (3)
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rock formations
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Fort Union Formation (2)
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sedimentary rocks
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sedimentary rocks
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clastic rocks
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conglomerate (1)
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mudstone (1)
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sandstone (7)
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shale (1)
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siliciclastics (1)
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sedimentary structures
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burrows (1)
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sedimentary structures
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planar bedding structures
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cross-stratification (1)
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hummocky cross-stratification (1)
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sediments
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siliciclastics (1)
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Great Divide Basin
Geochemical exploration for buried sandstone-hosted uranium mineralization using mobile U and Pb isotopes: case study of the REB deposit, Great Divide Basin, Wyoming
Sulfur Isotopes in Biogenically and Abiogenically Derived Uranium Roll-Front Deposits
A new middle Paleocene (early Tiffanian) mammalian fauna from the Overland Member of the Fort Union Formation, Great Divide Basin, Wyoming, U.S.A.
Abstract We illustrate how sediment budgets can be used to understand the relationships between tectonics and sedimentation and to estimate the partitioning of sediment in shelf, slope, and basin-floor fan compartments within ancient shelf-margin strata. The studied Lewis-Fox Hills shelf margin represents the early Maastrichtian infill of the Laramide-type Washakie-Great Divide basin of southern Wyoming. The shelf margin shows an evolution in two stages. In Stage 1, the shelf margin is characterized by rising shelf-edge trajectory associated with increasing clinothem volumes, widening marine topsets, and increasing clinoform heights; a relatively large fraction of the sediment budget is stored on the shelf compartment through Stage 1. In Stage 2, the shelf-edge trajectory becomes more progradational and is associated with decreasing clinothem volumes, wide coastal-plain topsets, and stable to decreasing clinoform heights; a larger fraction of the sediment budget is stored within deep-water compartments. We interpret that the evolution from Stage 1 to Stage 2 is driven chiefly by tectonic uplift of the adjacent mountains and associated basin subsidence: increasing in Stage 1 and stable to possibly decreasing in Stage 2. Sediment budget calculations suggests that average sediment supply to the basin was 4-16 × 10 6 ton/y, yield was within 200-2000 ton/km 2 /y, and hinterland maximum relief was 1000-3000 m. Integration of sediment budget estimates within source-to-sink evolution represents a powerful tool to build improved tectono-stratigraphic models, and develop predictive models for sediment storage across shelf-margin compartments.