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NARROW
GeoRef Subject
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all geography including DSDP/ODP Sites and Legs
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Asia
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China
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Aycross Formation (4)
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upper Eocene
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Oligocene
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Paleocene
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Primary terms
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Asia
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lower Eocene
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Wasatchian (1)
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Willwood Formation (11)
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Wind River Formation (3)
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middle Eocene
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Aycross Formation (4)
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-
upper Eocene
-
Tepee Trail Formation (1)
-
-
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Oligocene
-
Wiggins Formation (1)
-
-
Paleocene
-
lower Paleocene
-
Torrejonian (1)
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-
upper Paleocene
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Clarkforkian (2)
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Thanetian (1)
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Paleocene-Eocene Thermal Maximum (1)
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upper Cenozoic (1)
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chemical analysis (1)
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Chordata
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Vertebrata
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Pisces
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Osteichthyes (2)
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Tetrapoda
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Amphibia
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Lissamphibia
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Caudata
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Urodela (1)
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Aves (1)
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Mammalia
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Multituberculata (1)
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Theria
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Eutheria
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Insectivora
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Proteutheria (1)
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Perissodactyla (1)
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Primates (1)
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Reptilia
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Anapsida
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Testudines
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Diapsida
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Archosauria
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granites
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leucogranite (1)
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pegmatite (1)
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quartz monzonite (1)
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ultramafics
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chromitite (1)
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-
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volcanic rocks
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andesites (1)
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basalts
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flood basalts (1)
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shoshonite (4)
-
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dacites (1)
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glasses
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volcanic glass (1)
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pyroclastics
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tuff (3)
-
-
rhyolites (1)
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trachyandesites
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absarokite (2)
-
-
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inclusions
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fluid inclusions (2)
-
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Indian Ocean
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Red Sea (1)
-
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intrusions (13)
-
Invertebrata
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Arthropoda
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Chelicerata
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Merostomata
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Eurypterida (1)
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-
-
Trilobitomorpha
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Trilobita (1)
-
-
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Brachiopoda (1)
-
Cnidaria
-
Anthozoa
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Zoantharia
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Tabulata (1)
-
-
-
-
Mollusca
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Bivalvia (1)
-
-
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isostasy (1)
-
isotopes
-
radioactive isotopes
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C-14 (2)
-
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stable isotopes
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C-13/C-12 (3)
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Nd-144/Nd-143 (3)
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O-18/O-16 (6)
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Sr-87/Sr-86 (1)
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lava (1)
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lineation (2)
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magmas (12)
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mantle (7)
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maps (15)
-
Mesozoic
-
Cretaceous
-
Lower Cretaceous
-
Cloverly Formation (1)
-
Mowry Shale (2)
-
-
Upper Cretaceous
-
Cody Shale (1)
-
Frontier Formation (2)
-
Lance Formation (1)
-
Maestrichtian
-
upper Maestrichtian (1)
-
-
Mesaverde Group (1)
-
-
-
Jurassic
-
Middle Jurassic (1)
-
Upper Jurassic
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Morrison Formation (1)
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Sundance Formation (5)
-
-
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Triassic (2)
-
-
metal ores
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copper ores (1)
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iron ores (1)
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palladium ores (1)
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platinum ores (1)
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uranium ores (1)
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metals
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alkali metals
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potassium (3)
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rubidium (1)
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alkaline earth metals
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barium (1)
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magnesium (1)
-
strontium
-
Sr-87/Sr-86 (1)
-
-
-
gold (1)
-
iron
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ferrous iron (1)
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lead (2)
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platinum group
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palladium ores (1)
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platinum (1)
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platinum ores (1)
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rhodium (1)
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rare earths
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cerium (1)
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lanthanum (1)
-
neodymium
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Nd-144/Nd-143 (3)
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-
-
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metamorphic rocks
-
amphibolites
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orthoamphibolite (1)
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cataclasites (2)
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gneisses
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granite gneiss (1)
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marbles (1)
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metasedimentary rocks
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metavolcanic rocks (1)
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mineralogy (4)
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Mohorovicic discontinuity (4)
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North America
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Basin and Range Province (1)
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Canadian Shield
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Churchill Province
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Hearne Province (3)
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Slave Province (1)
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Superior Province (7)
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Great Plains
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Northern Great Plains (1)
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Rocky Mountains
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Southern Rocky Mountains (1)
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U. S. Rocky Mountains
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Absaroka Range
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Beartooth Mountains (39)
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Bighorn Mountains (1)
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Laramie Mountains (2)
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Medicine Bow Mountains (3)
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San Juan Mountains (1)
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Uinta Mountains (2)
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Wind River Range (5)
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Rocky Mountains foreland (2)
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Western Canada Sedimentary Basin (2)
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ocean floors (1)
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oxygen
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O-18/O-16 (6)
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paleoecology (4)
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paleogeography (6)
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paleomagnetism (5)
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paleontology (4)
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Paleozoic
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Cambrian
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Flathead Sandstone (1)
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Upper Cambrian (1)
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Carboniferous
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Mississippian
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Upper Mississippian
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Chesterian (1)
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ABSTRACT The Archean Wyoming Province formed and subsequently grew through a combination of magmatic and tectonic processes from ca. 4.0 to 2.5 Ga. Turning points in crustal evolution are recorded in four distinct phases of magmatism: (1) Early mafic magmatism formed a primordial crust between 4.0 and 3.6 Ga and began the formation of a lithospheric keel below the Wyoming Province in response to active plume-like mantle upwelling in a “stagnant lid”–type tectonic environment; (2) earliest sialic crust formed in the Paleoarchean by melting of hydrated mafic crust to produce rocks of the tonalite-trondhjemite-granodiorite (TTG) suite from ca. 3.6 to 2.9 Ga, with a major crust-forming event at 3.3–3.2 Ga that was probably associated with a transition to plate tectonics by ca. 3.5 Ga; (3) extensive calc-alkalic magmatism occurred during the Mesoarchean and Neoarchean (ca. 2.85–2.6 Ga), forming plutons that are compositionally equivalent to modern-day continental arc plutons; and (4) a late stage of crustal differentiation occurred through intracrustal melting processes ca. 2.6–2.4 Ga. Periods of tectonic quiescence are recognized in the development of stable platform supracrustal sequences (e.g., orthoquartzites, pelitic schists, banded iron formation, metabasites, and marbles) between ca. 3.0 and 2.80 Ga. Evidence for late Archean tectonic thickening of the Wyoming Province through horizontal tectonics and lateral accretion was likely associated with processes similar to modern-style convergent-margin plate tectonics. Although the province is surrounded by Paleoproterozoic orogenic zones, no post-Archean penetrative deformation or calc-alkalic magmatism affected the Wyoming Province prior to the Laramide orogeny. Its Archean crustal evolution produced a strong cratonic continental nucleus prior to incorporation within Laurentia. Distinct lithologic suites, isotopic compositions, and ages provide essential reference markers for models of assembly and breakup of the long-lived Laurentian supercontinent.