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Section
GeoRef Subject
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all geography including DSDP/ODP Sites and Legs
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Africa
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Southern Africa
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South Africa (1)
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West Africa
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Niger (1)
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Arctic region
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Greenland
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Canada
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Europe
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Western Europe
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Scandinavia
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Mexico (1)
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U. S. Rocky Mountains
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Western Interior
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Mississippi Valley
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Missouri (2)
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Carter County Montana (2)
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Mullen Creek-Nash Fork shear zone (1)
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San Juan County New Mexico (2)
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Socorro County New Mexico
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North Dakota
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Mercer County North Dakota (1)
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Oklahoma
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Oregon (1)
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Southwestern U.S. (3)
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water resources (1)
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elements, isotopes
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C-14 (3)
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hydrogen
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deuterium (1)
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isotope ratios (10)
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isotopes
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radioactive isotopes
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C-14 (3)
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stable isotopes
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C-13 (1)
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C-13/C-12 (9)
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D/H (2)
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deuterium (1)
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O-18/O-16 (3)
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Sr-87/Sr-86 (2)
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metals
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actinides
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uranium (1)
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alkali metals
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sodium (1)
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alkaline earth metals
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calcium (1)
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strontium
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Sr-87/Sr-86 (2)
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gold (1)
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iron (1)
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lead (1)
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nickel (1)
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platinum group
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iridium (2)
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platinum (1)
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oxygen
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O-18/O-16 (3)
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sulfur (1)
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fossils
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burrows (4)
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Chordata
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Vertebrata
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Pisces
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Osteichthyes
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Actinopterygii
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Chondrostei (1)
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Tetrapoda
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Amphibia
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Labyrinthodontia (1)
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Aves
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Neornithes (1)
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Mammalia
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Multituberculata (3)
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Theria
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Eutheria
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Artiodactyla
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Ruminantia
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Bovidae
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Bison (3)
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Tylopoda
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Camelidae (1)
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-
-
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Carnivora (1)
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Condylarthra (1)
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Insectivora (1)
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Perissodactyla
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Hippomorpha
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Equidae (2)
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Rodentia
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Sciuromorpha
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Sciuridae (1)
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Ungulata (2)
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-
-
-
Reptilia
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Anapsida
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Cotylosauria
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Captorhinomorpha (1)
-
-
-
Diapsida
-
Archosauria
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dinosaurs
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Ornithischia
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Ceratopsia (1)
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-
-
-
-
-
-
-
-
coprolites (1)
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ichnofossils
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Rhizocorallium (1)
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Invertebrata
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Arthropoda
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Mandibulata
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Crustacea
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Branchiopoda (1)
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Malacostraca (3)
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Ostracoda
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Podocopida
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Cypridocopina
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Cyprididae (1)
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-
-
-
-
-
Trilobitomorpha
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Trilobita (1)
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-
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Brachiopoda (2)
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Bryozoa (1)
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Cnidaria
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Anthozoa (1)
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Echinodermata
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Crinozoa
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Crinoidea (1)
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Echinozoa
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Echinoidea (1)
-
-
-
Mollusca
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Bivalvia
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Heterodonta
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Rudistae (1)
-
-
Ostreoidea
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Ostreidae
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Ostrea (1)
-
-
-
-
Cephalopoda
-
Nautiloidea
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Nautilus (1)
-
-
-
Gastropoda
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Pulmonata (1)
-
-
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Protista
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Foraminifera (4)
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Radiolaria (1)
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-
-
microfossils (11)
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palynomorphs
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megaspores (1)
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miospores
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pollen (3)
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-
-
Plantae
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algae
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diatoms (1)
-
-
Spermatophyta
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Angiospermae
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Monocotyledoneae
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Gramineae (1)
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-
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thallophytes (1)
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trails (2)
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geochronology methods
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K/Ar (1)
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optically stimulated luminescence (2)
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paleomagnetism (4)
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Rb/Sr (2)
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tephrochronology (1)
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thermochronology (1)
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U/Pb (3)
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geologic age
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Cenozoic
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middle Cenozoic (2)
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Quaternary
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Holocene
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lower Holocene (1)
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Medieval Warm Period (1)
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middle Holocene (1)
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Neoglacial (1)
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Pleistocene
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Blackwater Draw Formation (1)
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Champlain Sea (1)
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Lake Agassiz (1)
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Lake Algonquin (1)
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lower Pleistocene (1)
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Peoria Loess (4)
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upper Pleistocene
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Lake Iroquois (1)
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Rancholabrean (1)
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Wisconsinan
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upper Wisconsinan (2)
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-
-
-
upper Quaternary (4)
-
-
Tertiary
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Arikaree Group (3)
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Catahoula Formation (2)
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lower Tertiary (3)
-
Muddy Creek Formation (1)
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Neogene
-
Bidahochi Formation (1)
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Hemphillian (2)
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Miocene
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Ash Hollow Formation (1)
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Barstovian (2)
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Clarendonian (1)
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lower Miocene (1)
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upper Miocene (1)
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Valentine Formation (1)
-
-
Ogallala Formation (3)
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Pliocene
-
upper Pliocene
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Rexroad Formation (1)
-
-
-
-
Paleogene
-
Chadron Formation (1)
-
Eocene
-
lower Eocene (1)
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middle Eocene
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Aycross Formation (1)
-
-
upper Eocene
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Chadronian (1)
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-
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Oligocene
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Brule Formation (1)
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Frio Formation (1)
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lower Oligocene (2)
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-
Paleocene
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lower Paleocene
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Danian (1)
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K-T boundary (2)
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Puercan (3)
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Torrejonian (2)
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Ludlow Member (2)
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Tongue River Member (2)
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Tullock Member (1)
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upper Paleocene
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Clarkforkian (1)
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Tiffanian (1)
-
-
-
Wasatch Formation (3)
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White River Group (10)
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-
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upper Cenozoic (1)
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Laurentide ice sheet (3)
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Mesozoic
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Cretaceous
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Comanchean
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Washita Group (1)
-
-
Dakota Formation (2)
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Lower Cretaceous
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Albian (2)
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Cheyenne Sandstone (1)
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Fall River Formation (1)
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Kiowa Formation (1)
-
Mowry Shale (2)
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Muddy Sandstone (1)
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Skull Creek Shale (2)
-
-
Upper Cretaceous
-
Bearpaw Formation (1)
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Belle Fourche Shale (2)
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Campanian (3)
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Carlile Shale (2)
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Cenomanian (2)
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Cody Shale (1)
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Eagle Sandstone (1)
-
Fox Hills Formation (1)
-
Frontier Formation (2)
-
Fruitland Formation (1)
-
Gammon Ferruginous Member (1)
-
Greenhorn Limestone (2)
-
Hell Creek Formation (3)
-
Horseshoe Canyon Formation (1)
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Kirtland Shale (3)
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K-T boundary (2)
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Lewis Shale (2)
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Maestrichtian (2)
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Montana Group (1)
-
Ojo Alamo Sandstone (3)
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Pierre Shale (8)
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Senonian (4)
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Sharon Springs Member (2)
-
Smoky Hill Chalk Member (1)
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-
-
Jurassic
-
Upper Jurassic
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Oxfordian (1)
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Swift Formation (1)
-
-
-
Triassic
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Moenkopi Formation (1)
-
Upper Triassic
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Chinle Formation (2)
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Dockum Group (1)
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Shinarump Member (1)
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-
-
-
Paleozoic
-
Cambrian
-
Upper Cambrian
-
Galesville Sandstone (1)
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Lamotte Sandstone (1)
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Wonewoc Formation (1)
-
-
-
Carboniferous
-
Big Snowy Group (1)
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Mississippian
-
Charles Formation (1)
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Madison Group (1)
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Mission Canyon Limestone (1)
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-
Pennsylvanian
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Middle Pennsylvanian
-
Desmoinesian (1)
-
-
-
-
Devonian
-
Upper Devonian
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Duperow Formation (1)
-
-
-
Minnelusa Formation (1)
-
Ordovician
-
Lower Ordovician (1)
-
Middle Ordovician
-
Simpson Group (1)
-
Winnipeg Formation (1)
-
-
Upper Ordovician
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Red River Formation (1)
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-
Viola Limestone (1)
-
-
Permian
-
Guadalupian (2)
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Lower Permian
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Leonardian (2)
-
-
Phosphoria Formation (1)
-
Stone Corral Formation (1)
-
Wellington Formation (2)
-
-
Sauk Sequence (1)
-
-
Precambrian
-
Archean (4)
-
upper Precambrian
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Proterozoic
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Paleoproterozoic (2)
-
-
-
-
-
igneous rocks
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igneous rocks
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plutonic rocks
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granites
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leucogranite (1)
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-
-
volcanic rocks
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glasses
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volcanic glass (1)
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pyroclastics
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tuff (1)
-
-
-
-
-
metamorphic rocks
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metamorphic rocks
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amphibolites (1)
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gneisses
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granite gneiss (1)
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orthogneiss (1)
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-
metaigneous rocks
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metagranite (1)
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metasedimentary rocks (3)
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mylonites (1)
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-
-
minerals
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carbonates (1)
-
phosphates
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apatite (1)
-
-
silicates
-
chain silicates
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amphibole group (1)
-
-
framework silicates
-
feldspar group
-
alkali feldspar
-
K-feldspar (1)
-
-
plagioclase (1)
-
-
silica minerals
-
opal
-
opal-CT (1)
-
-
quartz (3)
-
-
zeolite group
-
clinoptilolite (1)
-
-
-
orthosilicates
-
nesosilicates
-
zircon group
-
coffinite (1)
-
zircon (2)
-
-
-
-
sheet silicates
-
clay minerals
-
smectite (4)
-
-
illite (1)
-
-
-
sulfates
-
anhydrite (1)
-
-
sulfides
-
pyrite (1)
-
-
-
Primary terms
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absolute age (8)
-
Africa
-
Southern Africa
-
South Africa (1)
-
-
West Africa
-
Niger (1)
-
-
-
Arctic region
-
Greenland
-
East Greenland (1)
-
-
-
atmosphere (1)
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Australasia
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New Zealand (1)
-
-
bibliography (3)
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biogeography (7)
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biography (1)
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Canada
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Western Canada
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Alberta (8)
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Manitoba (1)
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Saskatchewan (6)
-
-
-
carbon
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C-13 (1)
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C-13/C-12 (9)
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C-14 (3)
-
organic carbon (1)
-
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Caribbean region (1)
-
catalogs (2)
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Cenozoic
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middle Cenozoic (2)
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Quaternary
-
Holocene
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lower Holocene (1)
-
Medieval Warm Period (1)
-
middle Holocene (1)
-
Neoglacial (1)
-
-
Pleistocene
-
Blackwater Draw Formation (1)
-
Champlain Sea (1)
-
Lake Agassiz (1)
-
Lake Algonquin (1)
-
lower Pleistocene (1)
-
Peoria Loess (4)
-
upper Pleistocene
-
Lake Iroquois (1)
-
Rancholabrean (1)
-
Wisconsinan
-
upper Wisconsinan (2)
-
-
-
-
upper Quaternary (4)
-
-
Tertiary
-
Arikaree Group (3)
-
Catahoula Formation (2)
-
lower Tertiary (3)
-
Muddy Creek Formation (1)
-
Neogene
-
Bidahochi Formation (1)
-
Hemphillian (2)
-
Miocene
-
Ash Hollow Formation (1)
-
Barstovian (2)
-
Clarendonian (1)
-
lower Miocene (1)
-
upper Miocene (1)
-
Valentine Formation (1)
-
-
Ogallala Formation (3)
-
Pliocene
-
upper Pliocene
-
Rexroad Formation (1)
-
-
-
-
Paleogene
-
Chadron Formation (1)
-
Eocene
-
lower Eocene (1)
-
middle Eocene
-
Aycross Formation (1)
-
-
upper Eocene
-
Chadronian (1)
-
-
-
Oligocene
-
Brule Formation (1)
-
Frio Formation (1)
-
lower Oligocene (2)
-
-
Paleocene
-
lower Paleocene
-
Danian (1)
-
K-T boundary (2)
-
Puercan (3)
-
Torrejonian (2)
-
-
Ludlow Member (2)
-
Tongue River Member (2)
-
Tullock Member (1)
-
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GeoRef Categories
Era and Period
Epoch and Age
Book Series
Date
Availability
Geochemistry of the Cretaceous Mowry Shale in the Wind River Basin, Wyoming Open Access
Reconstruction of isostatically adjusted paleo-strandlines along the southern margin of the Laurentide Ice Sheet in the Great Lakes, Lake Agassiz, and Champlain Sea basins Available to Purchase
THE IMPORTANCE OF THE MUSEUM IN ANTEBELLUM U.S. WESTERN TERRITORIAL EXPLORATION: PART 2. THE ROLES OF HAYDEN AND MEEK IN A PARADIGM SHIFT IN GEOLOGIC AND PALEONTOLOGIC STUDIES Available to Purchase
Applying Waveform Correlation to Reduce Seismic Analyst Workload Due to Repeating Mining Blasts Available to Purchase
Late Paleogene emergence of a North American loess plateau Open Access
The use of water from the Edwards Aquifers, Texas Available to Purchase
ABSTRACT Both people and the environment require water. The environment in Texas depends upon water discharged from the Edwards Aquifers, including ~1.5 million megaliters per year (ML/yr) from the Edwards-Trinity (Plateau) Aquifer and ~1 million ML/yr from the Edwards (Balcones Fault Zone) Aquifer. The first people in the area used the aquifer springs as drinking water and subsequently irrigated with the springs’ flow and then began drilling and pumping wells. Well production in the Edwards (Balcones Fault Zone) Aquifer was ~120,000 ML/yr in the 1930s and steadily increased over the next three decades to ~500,000 ML/yr, which is the average use from 1970 to 2015. Production from the Edwards-Trinity (Plateau) Aquifer was ~250,000 ML/yr from 1984 through 2016, while production from the Edwards-Trinity (High Plains) Aquifer was ~25,000 ML/yr from 1984 through 2016. The Interstate 35 growth corridor, extending from Bexar County (San Antonio) through New Braunfels, San Marcos, and Austin, Texas, and up to Bell County, is expected to grow from 4.6 million people in 2020 to 8.7 million in 2070. Despite the needs of this growing population, groundwater availability and regional water planning information suggests that pumping from the Edwards (Balcones Fault Zone) Aquifer over the next 50 yr will be limited. Groundwater availability numbers suggest that pumping in the Edwards-Trinity (Plateau) Aquifer could double from current levels, although planning information currently projects a more modest increase. Unsettled groundwater law and climate change could also affect future levels of pumping.
V S 30 Characterization of Texas, Oklahoma, and Kansas Using the P-Wave Seismogram Method Available to Purchase
A Late Cretaceous polygonal fault system in central North America Available to Purchase
Middle Cenozoic diachronous shift to eolian deposition in the central Rocky Mountains: Timing, provenance, and significance for paleoclimate, tectonics, and paleogeography Open Access
The AgroEcoSystem (AgES) Response-Function Model Simulates Layered Soil-Water Dynamics in Semiarid Colorado: Sensitivity and Calibration Available to Purchase
Continental uplift through crustal hydration Available to Purchase
The influence of long-wavelength tilting and climatic change on sediment accumulation Open Access
Middle Cenozoic uplift and concomitant drying in the central Rocky Mountains and adjacent Great Plains Available to Purchase
Modeling acoustic wave propagation in heterogeneous attenuating media using decoupled fractional Laplacians Available to Purchase
Abstract Geological and human forces have created some spectacular treasures at the boundary between the Central Lowlands and the Great Plains, and three of them are explored in this guide. In northern Nebraska, the Ashfall Fossil Beds site, a world-class Lagerstätte of articulated mammal, reptile, and bird skeletons, reveals the mass death of a Miocene biotic community. Chapter 1 provides a detailed overview of the geology, paleontology, and reconstructed paleocommunity at Ashfall. The bluffs of the Missouri River in eastern Iowa contain some classic type sections of Pleistocene stratigraphic units. Chapter 2 explores the historical development of Pleistocene stratigraphy in this area and presents new data to refine understanding of the area’s complex geological history. Finally, Chapter 3 presents a unique tour of the Nebraska State Capitol in Lincoln, which is clad with Indiana limestone and adorned with igneous, metamorphic, and sedimentary rocks from European and U.S. quarries. The field guide describes the historical, architectural, and geological aspects of these stones.