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all geography including DSDP/ODP Sites and Legs
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Canada
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Lewis thrust fault (3)
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North America
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United States
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illite (1)
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Primary terms
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Canada
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Western Canada
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carbon
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Cenozoic
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Pleistocene
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upper Pleistocene
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upper Wisconsinan (1)
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upper Quaternary
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Chordata
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Vertebrata
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Tetrapoda
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Reptilia
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Diapsida
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Archosauria
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dinosaurs
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Ornithischia
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Ornithopoda
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Hadrosauridae (3)
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Saurischia
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Coelurosauria (1)
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igneous rocks
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volcanic rocks
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pyroclastics
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tuff (1)
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Invertebrata
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Arthropoda
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Insecta (1)
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isotopes
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radioactive isotopes
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C-14 (1)
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Mesozoic
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Cretaceous
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Lower Cretaceous
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Blackleaf Formation (1)
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Upper Cretaceous
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Bearpaw Formation (1)
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Campanian
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lower Campanian (1)
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Elkhorn Mountains Volcanics (1)
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Senonian (1)
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Two Medicine Formation (9)
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Jurassic (1)
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metals
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iron
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ferric iron (1)
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ferrous iron (1)
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metamorphic rocks
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cataclasites (1)
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metasedimentary rocks (1)
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metamorphism (1)
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minerals (1)
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North America
-
Disturbed Belt (1)
-
Glacier National Park (2)
-
Great Plains
-
Northern Great Plains (1)
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-
Rocky Mountains
-
U. S. Rocky Mountains (1)
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Rocky Mountains foreland (1)
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Williston Basin (1)
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paleoclimatology (1)
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paleoecology (3)
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paleogeography (2)
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Paleozoic
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Carboniferous
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Mississippian
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Madison Group (1)
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Devonian (1)
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Exshaw Formation (1)
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upper Paleozoic
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Bakken Formation (1)
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petroleum (2)
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petrology (1)
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Precambrian
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Archean (1)
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reservoirs (1)
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sea-level changes (1)
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sedimentary rocks
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clastic rocks
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shale (1)
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siltstone (1)
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sedimentary structures (1)
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spectroscopy (1)
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stratigraphy (2)
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structural analysis (2)
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tectonics (1)
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tectonophysics (1)
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United States
-
Montana
-
Chouteau County Montana (1)
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Flathead County Montana (2)
-
Glacier County Montana (8)
-
Hill County Montana (1)
-
Lewis and Clark County Montana (1)
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Liberty County Montana (1)
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Pondera County Montana (6)
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Teton County Montana (4)
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Toole County Montana (1)
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Valley County Montana (1)
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U. S. Rocky Mountains (1)
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Utah
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Utah County Utah (1)
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X-ray analysis (1)
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sedimentary rocks
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sedimentary rocks
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bone beds (1)
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carbonate rocks
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dolostone (1)
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clastic rocks
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bentonite (2)
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claystone (1)
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mudstone (1)
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sandstone (1)
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shale (1)
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siltstone (1)
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volcaniclastics (1)
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sedimentary structures
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coprolites (1)
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sedimentary structures (1)
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sediments
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volcaniclastics (1)
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GeoRef Categories
Era and Period
Epoch and Age
Date
Availability
The Cardston Earthquake Swarm and Hydraulic Fracturing of the Exshaw Formation (Alberta Bakken Play) Available to Purchase
A THEROPOD NESTING TRACE WITH EGGS FROM THE UPPER CRETACEOUS (CAMPANIAN) TWO MEDICINE FORMATION OF MONTANA Available to Purchase
Porosity and water vapor conductance of two Troodon formosus eggs: an assessment of incubation strategy in a maniraptoran dinosaur Available to Purchase
The skull and appendicular skeleton of Gryposaurus latidens , a saurolophine hadrosaurid (Dinosauria: Ornithopoda) from the early Campanian (Cretaceous) of Montana, USA Available to Purchase
THE PALEOBIOLOGICAL IMPLICATIONS OF HERBIVOROUS DINOSAUR COPROLITES FROM THE UPPER CRETACEOUS TWO MEDICINE FORMATION OF MONTANA: WHY EAT WOOD? Available to Purchase
Reinterpretation of fractures at Swift Reservoir, Rocky Mountain thrust front, Montana: Passage of a Jurassic forebulge? Available to Purchase
A sub–Middle Jurassic unconformity is exhumed at Swift Reservoir, in the Rocky Mountain fold-and-thrust belt of Montana. The unconformity separates late Mississippian Sun River Dolomite of the Madison Group (ca. 340 Ma) from the transgressive basal sandstone of the Middle Jurassic (Bajocian-Bathonian) Sawtooth Formation (ca. 170 Ma). North-northwest–trending, karst-widened fractures (grikes) filled with cherty and phosphatic sandstone and conglomerate of the basal Sawtooth Formation penetrate the Madison Group for 4 m below the unconformity. The fractures link into sandstone-filled cavities along bedding planes. Clam borings, filled with fine-grained Sawtooth sandstone, pepper the unconformity surface and some of the fracture walls. Sandstone-filled clam borings also perforate rounded clasts of Mississippian limestone that lie on the surface of the unconformity within basal Sawtooth conglomerate. After deposition of the overlying foreland basin clastic wedge, the grikes were stylolitized by layer-parallel shortening and then buckled over fault-propagation anticlinal crests in the Late Cretaceous–Paleocene fold-and-thrust belt. We propose that the grikes record uplift and erosion followed by subsidence as the Rocky Mountain foreland experienced elastic flexure in response to tectonic loading at the plate boundary farther to the west during the Middle Jurassic. The forebulge opened strike-parallel fractures in the Madison Group that were then karstified. The sandstone-filled karst system contributes secondary porosity and permeability to the upper Madison Group, which is a major petroleum reservoir in the region. The recognition of the fractures as pre–Middle Jurassic revises previous models that have related them to Cretaceous or Paleocene fracturing over the crests of fault-propagation folds in the fold-and-thrust belt, substantially changing our understanding of the hydrocarbon system.