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NARROW
GeoRef Subject
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all geography including DSDP/ODP Sites and Legs
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Africa
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Central Africa
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Congo River (1)
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North Africa
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Egypt
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Nile Delta (4)
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Southern Africa
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Karoo Basin (1)
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South Africa (1)
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West Africa
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Nigeria
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Far East
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Expedition 355
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elements, isotopes
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oxygen
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Invertebrata
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Protista
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Foraminifera
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Rotaliina
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microfossils
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Plantae
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geochronology methods
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geologic age
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upper Quaternary (4)
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Tertiary
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Pliocene
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upper Neogene (2)
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Paleogene
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Dongying Formation (2)
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Green River Formation (1)
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middle Eocene
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Claiborne Group (1)
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upper Eocene
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Jackson Group (1)
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Oligocene
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Frio Formation (2)
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lower Oligocene
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Rupelian (2)
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upper Oligocene
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Chattian (1)
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Vicksburg Group (1)
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Paleocene (1)
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upper Paleogene (1)
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Shahejie Formation (2)
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upper Cenozoic (1)
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Lake Bonneville (1)
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Mesozoic
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Cretaceous
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Comanchean
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Pearsall Formation (1)
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Lower Cretaceous
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Albian (2)
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Aptian
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Shuaiba Formation (1)
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Berriasian (1)
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Clearwater Formation (1)
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Mannville Group (1)
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McMurray Formation (1)
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Muderong Shale (1)
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Zubair Formation (1)
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Middle Cretaceous (1)
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Qingshankou Formation (1)
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Bearpaw Formation (1)
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Belle Fourche Shale (1)
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Blackhawk Formation (1)
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Campanian (2)
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upper Cenomanian (1)
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Coniacian (1)
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Ferron Sandstone Member (1)
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Gammon Ferruginous Member (1)
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Gulfian
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Austin Chalk (1)
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Eagle Ford Formation (2)
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Woodbine Formation (1)
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Horseshoe Canyon Formation (1)
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Maestrichtian (1)
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Niobrara Formation (2)
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Pictured Cliffs Sandstone (1)
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Pierre Shale (1)
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Shannon Sandstone Member (1)
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Turonian
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lower Turonian (1)
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Wall Creek Member (1)
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Jurassic
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Lower Jurassic
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Pliensbachian (1)
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Middle Jurassic
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Bajocian
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Ness Formation (1)
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Rannoch Formation (1)
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Tarbert Formation (1)
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Xishanyao Formation (1)
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Upper Jurassic
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Bossier Formation (1)
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Haynesville Formation (1)
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Smackover Formation (1)
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Tithonian (1)
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Triassic
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Lower Triassic
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Smithian (1)
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Middle Triassic
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Anisian (1)
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Doig Formation (5)
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Montney Formation (4)
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Upper Triassic
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Vaca Muerta Formation (2)
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Paleozoic
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Cambrian
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Upper Cambrian (1)
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Carboniferous
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Jackfork Group (1)
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Mississippian
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Borden Group (1)
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Lower Mississippian
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Fort Payne Formation (1)
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Kinderhookian
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Banff Formation (1)
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Osagian (1)
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Tournaisian (1)
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Upper Mississippian
-
Meramecian
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Salem Limestone (1)
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Warsaw Formation (1)
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-
-
-
Pennsylvanian
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Upper Pennsylvanian
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Gzhelian (1)
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-
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Upper Carboniferous (1)
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Devonian
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Middle Devonian
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Eifelian (1)
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Mahantango Formation (1)
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Marcellus Shale (1)
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Onondaga Limestone (1)
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-
Upper Devonian
-
Frasnian
-
Leduc Formation (2)
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-
-
-
Exshaw Formation (1)
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Ordovician
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Lower Ordovician (1)
-
Upper Ordovician
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Hirnantian (1)
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-
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Permian
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Guadalupian (2)
-
Lower Permian
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Cisuralian (1)
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Leonardian
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Bone Spring Limestone (1)
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Wolfcampian (1)
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Upper Permian
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Lopingian (1)
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Silurian (1)
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upper Paleozoic
-
Bakken Formation (1)
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Kaskaskia Sequence (1)
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Woodford Shale (1)
-
-
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igneous rocks
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igneous rocks
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volcanic rocks
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basalts
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pyroclastics (1)
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metamorphic rocks
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turbidite (16)
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minerals
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oxides
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sheet silicates
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kaolinite (1)
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smectite (1)
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illite (1)
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sulfates
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gypsum (1)
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sulfides
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pyrite (1)
-
-
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Primary terms
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absolute age (5)
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Africa
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Central Africa
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Congo River (1)
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-
North Africa
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Egypt
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Nile Delta (4)
-
-
-
Southern Africa
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Karoo Basin (1)
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South Africa (1)
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West Africa
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Nigeria
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Niger Delta (2)
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Arctic Ocean
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Arctic region
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Far East
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China
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Shandong China
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Dongying Depression (1)
-
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Songliao Basin (1)
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Xinjiang China
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Junggar Basin (1)
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Indonesia
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Java (1)
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Kalimantan Indonesia
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Mahakam Delta (1)
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Himalayas (1)
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Indian Peninsula
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Indus River (2)
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Iran (1)
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Zagros (1)
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Tibetan Plateau (1)
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-
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Atlantic Ocean
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-
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-
Gulf of Saint Lawrence (1)
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North Sea
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South Atlantic
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Santos Basin (1)
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Australasia
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Australia
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Queensland Australia
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Denison Trough (1)
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Western Australia
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Carnarvon Basin (1)
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biogeography (1)
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Canada
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Quebec
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Kamouraska County Quebec (1)
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-
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Nunavut
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Western Canada
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Athabasca Oil Sands (1)
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Drumheller Alberta (1)
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British Columbia
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Saanich Inlet (1)
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Canadian Rocky Mountains (1)
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Manitoba (1)
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Saskatchewan (1)
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-
-
carbon
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C-13/C-12 (4)
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C-14 (5)
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organic carbon (2)
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Caribbean region
-
West Indies
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Antilles
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Lesser Antilles
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Trinidad and Tobago
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Trinidad (1)
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Virgin Islands
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U. S. Virgin Islands (1)
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-
-
-
-
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Cenozoic
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Agbada Formation (1)
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Quaternary
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Holocene
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Middle Ages (1)
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upper Holocene (1)
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Pleistocene
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Lake Lahontan (1)
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lower Pleistocene
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Calabrian (1)
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middle Pleistocene
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Cromerian (1)
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Saalian (1)
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upper Pleistocene
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Weichselian
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upper Weichselian
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Younger Dryas (2)
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-
-
-
-
upper Quaternary (4)
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-
Tertiary
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Neogene
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Miocene
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lower Miocene
-
Aquitanian (1)
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Burdigalian (1)
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middle Miocene
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Serravallian (1)
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Oakville Sandstone (1)
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upper Miocene
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Messinian
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Messinian Salinity Crisis (1)
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Pontian (1)
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Tortonian (1)
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-
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Pliocene
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lower Pliocene (2)
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upper Neogene (2)
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Paleogene
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Dongying Formation (2)
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Eocene
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Green River Formation (1)
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middle Eocene
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Claiborne Group (1)
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Lutetian (1)
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Sparta Sand (1)
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-
upper Eocene
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Jackson Group (1)
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-
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Oligocene
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Frio Formation (2)
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lower Oligocene
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Rupelian (2)
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-
upper Oligocene
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Chattian (1)
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Vicksburg Group (1)
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Paleocene (1)
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upper Paleogene (1)
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Wilcox Group (1)
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Shahejie Formation (2)
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upper Cenozoic (1)
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Chordata
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Vertebrata (2)
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climate change (3)
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coal deposits (2)
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continental shelf (4)
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continental slope (3)
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data processing (4)
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Deep Sea Drilling Project
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Leg 42B
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DSDP Site 380 (1)
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deformation (7)
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diagenesis (8)
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Europe
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Central Europe
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Danube River (1)
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Pannonian Basin (1)
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Italy
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Western Europe
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Sweden
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United Kingdom
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-
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faults (21)
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folds (6)
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ichnofossils
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Skolithos (1)
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igneous rocks
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basalts
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flood basalts (1)
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pyroclastics (1)
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-
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Indian Ocean
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Arabian Sea
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Indus Fan (2)
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Persian Gulf (2)
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Bay of Bengal (1)
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Invertebrata
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Mollusca
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Cephalopoda
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Ammonoidea (1)
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Polyplacophora (1)
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Protista
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Foraminifera
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Fusulinina
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Fusulinidae (1)
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-
Rotaliina
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Globigerinacea
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Globigerinidae
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Globigerina (1)
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-
Globorotaliidae
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Globorotalia (1)
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-
-
-
-
-
-
isostasy (1)
-
isotopes
-
radioactive isotopes
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C-14 (5)
-
Re-187/Os-188 (1)
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-
stable isotopes
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C-13/C-12 (4)
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O-18/O-16 (5)
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Os-188/Os-187 (1)
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Re-187/Os-188 (1)
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Sr-87/Sr-86 (1)
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-
-
Malay Archipelago
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Borneo
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Kalimantan Indonesia
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Mahakam Delta (1)
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-
-
-
Mediterranean region (1)
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Mediterranean Sea
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East Mediterranean
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Black Sea (4)
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West Mediterranean
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Alboran Sea (1)
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Balearic Basin (1)
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Tyrrhenian Sea (2)
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Valencia Trough (1)
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-
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Mesozoic
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Cretaceous
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Comanchean
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Pearsall Formation (1)
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-
Lower Cretaceous
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Albian (2)
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Aptian
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Shuaiba Formation (1)
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-
Berriasian (1)
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Clearwater Formation (1)
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Mannville Group (1)
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McMurray Formation (1)
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Muderong Shale (1)
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Neocomian (1)
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Pearsall Formation (1)
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Spirit River Formation (1)
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Torok Formation (1)
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Valanginian (1)
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Zubair Formation (1)
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Middle Cretaceous (1)
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Nanushuk Group (1)
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Natih Formation (1)
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Nenjiang Formation (1)
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Qingshankou Formation (1)
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Upper Cretaceous
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Bearpaw Formation (1)
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Belle Fourche Shale (1)
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Blackhawk Formation (1)
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Campanian (2)
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Cenomanian
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upper Cenomanian (1)
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-
Coniacian (1)
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Ferron Sandstone Member (1)
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Frontier Formation (2)
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Fruitland Formation (1)
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Gammon Ferruginous Member (1)
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Gulfian
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Austin Chalk (1)
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Eagle Ford Formation (2)
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Woodbine Formation (1)
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-
Horseshoe Canyon Formation (1)
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Maestrichtian (1)
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Niobrara Formation (2)
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Pictured Cliffs Sandstone (1)
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Pierre Shale (1)
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Santonian (1)
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Senonian (1)
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Shannon Sandstone Member (1)
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Sharon Springs Member (1)
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Sussex Sandstone Member (1)
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Turonian
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lower Turonian (1)
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-
Wall Creek Member (1)
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-
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Jurassic
-
Lower Jurassic
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Pliensbachian (1)
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Toarcian (1)
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-
Middle Jurassic
-
Bajocian
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Brent Group (1)
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Etive Formation (1)
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Ness Formation (1)
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Rannoch Formation (1)
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Tarbert Formation (1)
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-
Xishanyao Formation (1)
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-
Upper Jurassic
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Bossier Formation (1)
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Haynesville Formation (1)
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Smackover Formation (1)
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Tithonian (1)
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-
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Triassic
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Lower Triassic
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Smithian (1)
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Spathian (2)
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Middle Triassic
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Anisian (1)
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Doig Formation (5)
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-
Montney Formation (4)
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Upper Triassic
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Carnian (1)
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-
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Vaca Muerta Formation (2)
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metals
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alkali metals
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potassium (1)
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-
alkaline earth metals
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calcium
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Sr/Ca (1)
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-
strontium
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Sr/Ca (1)
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Sr-87/Sr-86 (1)
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-
-
aluminum (1)
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iron (1)
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molybdenum (1)
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platinum group
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osmium
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Os-188/Os-187 (1)
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Re-187/Os-188 (1)
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-
-
rhenium
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Re-187/Os-188 (1)
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-
titanium (1)
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vanadium (1)
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zirconium (1)
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-
metasomatism (1)
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Mexico
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Quintana Roo Mexico (1)
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Sierra Madre Oriental (1)
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Trans-Mexican volcanic belt (1)
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-
North America
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Appalachian Basin (2)
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Appalachians
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Blue Ridge Mountains (1)
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-
Basin and Range Province
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Gulf Coastal Plain (3)
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Western Canada Sedimentary Basin (1)
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Western Interior
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Western Interior Seaway (3)
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Williston Basin (1)
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-
ocean basins (1)
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ocean circulation (1)
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Ocean Drilling Program
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Leg 138
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ODP Site 846 (1)
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-
Leg 151
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ODP Site 913 (1)
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-
Leg 169S
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ODP Site 1033 (1)
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-
Leg 175
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ODP Site 1085 (1)
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-
-
ocean floors (8)
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ocean waves (1)
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oil and gas fields (11)
-
oxygen
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O-18/O-16 (5)
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-
Pacific Ocean
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East Pacific
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Northeast Pacific
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Astoria Canyon (1)
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-
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North Pacific
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Northeast Pacific
-
Astoria Canyon (1)
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-
Northwest Pacific
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South China Sea
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Zhujiangkou Basin (1)
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-
Yellow Sea
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Bohai Sea
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Bohai Bay (3)
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-
-
-
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South Pacific
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Southwest Pacific
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Java Sea (2)
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-
-
West Pacific
-
Indonesian Seas
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Java Sea (2)
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Makassar Strait (2)
-
-
Northwest Pacific
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South China Sea
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Zhujiangkou Basin (1)
-
-
Yellow Sea
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Bohai Sea
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Bohai Bay (3)
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-
-
-
Southwest Pacific
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Java Sea (2)
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-
-
-
paleoclimatology (16)
-
paleogeography (17)
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paleomagnetism (2)
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Paleozoic
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Cambrian
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Upper Cambrian (1)
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-
Carboniferous
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Jackfork Group (1)
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Mississippian
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Borden Group (1)
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Lower Mississippian
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Fort Payne Formation (1)
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Kinderhookian
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Banff Formation (1)
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-
Osagian (1)
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Tournaisian (1)
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-
Upper Mississippian
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Meramecian
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Salem Limestone (1)
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Warsaw Formation (1)
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-
-
-
Pennsylvanian
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Upper Pennsylvanian
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Gzhelian (1)
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-
-
Upper Carboniferous (1)
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-
Devonian
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Middle Devonian
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Eifelian (1)
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Mahantango Formation (1)
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Marcellus Shale (1)
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Onondaga Limestone (1)
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-
Upper Devonian
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Frasnian
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Leduc Formation (2)
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-
-
-
Exshaw Formation (1)
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Ordovician
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Lower Ordovician (1)
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Upper Ordovician
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Hirnantian (1)
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-
-
Permian
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Guadalupian (2)
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Lower Permian
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Cisuralian (1)
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Leonardian
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Bone Spring Limestone (1)
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-
Wolfcampian (1)
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-
Upper Permian
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Lopingian (1)
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-
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Silurian (1)
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upper Paleozoic
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Bakken Formation (1)
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Kaskaskia Sequence (1)
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-
Woodford Shale (1)
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-
palynomorphs
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Chitinozoa (1)
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-
petroleum
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natural gas
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coalbed methane (2)
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-
shale oil (2)
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-
phosphorus (1)
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Plantae
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algae
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Sphenolithus (1)
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-
-
-
plate tectonics (6)
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reefs (1)
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remote sensing (2)
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reservoirs (1)
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sea-level changes (82)
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sedimentary petrology (1)
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sedimentary rocks
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carbonate rocks
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dolostone (2)
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limestone (1)
-
-
chemically precipitated rocks
-
evaporites (1)
-
-
clastic rocks
-
arenite
-
quartz arenite (1)
-
-
black shale (1)
-
conglomerate (6)
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diamictite (1)
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eolianite (1)
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marl (1)
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mudstone (16)
-
red beds (1)
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sandstone (40)
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shale (12)
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siltstone (8)
-
-
coal (5)
-
-
sedimentary structures
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carbonate banks (1)
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-
planar bedding structures
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bedding (2)
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hummocky cross-stratification (2)
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imbrication (1)
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sand bodies (7)
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secondary structures
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concretions (1)
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soft sediment deformation (1)
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-
sedimentation (19)
-
sediments
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clastic sediments
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loess (1)
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mud (2)
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marine sediments (2)
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shorelines (2)
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Brazil (2)
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sulfur (1)
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United States
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Pennsylvania
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Powder River basin (2)
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Texas
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San Marcos Arch (2)
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San Patricio County Texas (1)
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Uinta Basin (1)
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Grand County Utah (1)
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Kane County Utah (1)
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Western U.S. (1)
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Johnson County Wyoming (1)
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Natrona County Wyoming (1)
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-
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weathering (3)
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well-logging (2)
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-
rock formations
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Emeishan Basalts (1)
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San Andres Formation (1)
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-
sedimentary rocks
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contourite (1)
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flysch (1)
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oolite (1)
-
sedimentary rocks
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carbonate rocks
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beachrock (1)
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dolostone (2)
-
limestone (1)
-
-
chemically precipitated rocks
-
evaporites (1)
-
-
clastic rocks
-
arenite
-
quartz arenite (1)
-
-
black shale (1)
-
conglomerate (6)
-
diamictite (1)
-
eolianite (1)
-
marl (1)
-
mudstone (16)
-
red beds (1)
-
sandstone (40)
-
shale (12)
-
siltstone (8)
-
-
coal (5)
-
-
siliciclastics (13)
-
tempestite (2)
-
turbidite (16)
-
-
sedimentary structures
-
channels (4)
-
sedimentary structures
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biogenic structures
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bioturbation (4)
-
carbonate banks (1)
-
-
planar bedding structures
-
bedding (2)
-
hummocky cross-stratification (2)
-
imbrication (1)
-
laminations (1)
-
sand bodies (7)
-
-
secondary structures
-
concretions (1)
-
-
soft sediment deformation (1)
-
-
-
sediments
-
contourite (1)
-
oolite (1)
-
sediments
-
clastic sediments
-
boulders (1)
-
gravel (1)
-
loess (1)
-
mud (2)
-
outwash (1)
-
sand (6)
-
-
marine sediments (2)
-
peat (1)
-
-
siliciclastics (13)
-
tempestite (2)
-
turbidite (16)
-
-
soils
-
paleosols (2)
-
lowstands
Aeromagnetic data reveals buried Quaternary drainage patterns in the Gulf of St Lawrence (Canada)
An integrated chemostratigraphic and sequence stratigraphic analysis of extended (>1000 ft) lower Permian Wolfcamp cores, Reagan County, southern Midland Basin
Global sea-level rise increased during the twentieth century from 1.5 to 3.0 mm/yr and is expected to at least double over the next few decades. The Western Louisiana and Texas coast is especially vulnerable to sea-level rise due to low gradients, high subsidence, and depleted sediment supply. This Memoir describes the regional response of coastal environments to variable rates of sea-level rise and sediment supply during Holocene to modern time. It is based on results from more than six decades of research focused on coastal and nearshore stratigraphic records. The results are a wake-up call for those who underestimate the potential magnitude of coastal change over decadal to centennial time scales, with dramatic changes caused by accelerated sea-level rise and diminished sediment supply.
Postglacial sea-level lowstand on Cumberland Peninsula, Baffin Island, Nunavut
ABSTRACT Shorelines formed by terminal lakes record past changes in regional moisture budgets. In the western Great Basin of North America, winter precipitation accounts for nearly half of the annual total and is well correlated with northeast Pacific storm track activity and moisture transport. We evaluated these relationships and found that historical precipitation between 1910 and 2012 was better correlated to moisture transport (0.78, p < 0.01) than to storm track activity (0.54, p < 0.01) because moisture transport better captures dynamics associated with the Sierra Nevada rain shadow. We derived modern analogs of enhanced and reduced storm track activity and moisture transport from reanalysis products and used associated winter precipitation anomalies with these analogs as inputs to a coupled water balance and lake evaporation model of the Walker Lake basin. Simulated lake-level responses were compared with a radiocarbon-dated lakeshore chronology spanning the past 3700 yr. Wet analogs developed from winters in the 90th and 75th percentiles for storminess and moisture transport produced lake levels that exceeded estimated late Holocene highstands by 50 m. Dry analogs (10th and 25th percentiles) produced lake levels corresponding to Medieval megadrought lowstands. The twentieth century is shown to be as wet as any century in the past 3700 yr. Our results demonstrate the sensitivity of terminal lakes to winter season circulations and highlight the value of using moisture transport as a predictor of cool season precipitation and to evaluate how past or future changes in regional circulations will influence the water balance of dryland regions.
ABSTRACT The Uinta Basin of eastern Utah is an intermontane basin that contains an ~2-km-thick succession of mostly carbonate-rich mudrock assigned to the Eocene Green River Formation. In the southwest part of the basin, along Nine Mile Canyon and its tributary canyons, the middle member of the Green River Formation contains numerous interbedded sand bodies. Previous researchers have interpreted these sand bodies variably as lacustrine deltaic mouth bars, terminal fluvial distributary bars, and various types of fluvial (delta plain/floodplain/braid plain) bar. Using some modern western U.S. lakes as partial analogues, and taking into account the overall lacustrine basin context of a widely fluctuating, wave-influenced, alkaline-lake shoreline, we again interpret many of the sand bodies to be fluvial in origin. Several sand bodies both truncate and are capped by brown to red-maroon and variegated weak to noncalcareous mudstone with root and desiccation structures, indicating terrestrial deposition well away from the lake shoreline. Others display steep cutbanks from which noncalcareous, inclined heterolithic stratification laterally accreted as fluvial side bars. Utilizing helicopter-based light detection and ranging (LiDAR) data, we investigated additional sand bodies that may be better examples of deltaic mouth bars. In contrast to the more commonly documented highstand progradational mouth bars of marine and open lake settings, these sand bodies are interpreted to have originated as late-lowstand or transgressive system tract fluvial channels that were then flooded and modified by waves following lake transgression. These examples illustrate that any large-scale sandy bed form present in the general vicinity of a closed basin’s fluctuating lake shore may be expected to have formed under more than one set of environmental conditions. A revised set of guidelines is therefore presented to aid in the interpretation of lacustrine deltaic mouth bars.
Carbon isotope chemostratigraphy and sea-level history of the Hirnantian Stage (uppermost Ordovician) in the Oslo–Asker district, Norway
Geochemistry of macrofossil, bulk rock and secondary calcite in the Early Jurassic strata of the Llanbedr (Mochras Farm) drill core, Cardigan Bay Basin, Wales, UK
Sequence stratigraphy of the Niobrara Formation: Implications for age-constraining tectonic events and stratigraphic complexities in the Denver-Julesburg Basin, United States
New sequence stratigraphic framework on a ‘passive’ margin: implications for the post-break-up depositional environment and onset of glaciomarine conditions in NE Greenland
Chasing the 400 kyr pacing of deep-marine sandy submarine fans: Middle Eocene Aínsa Basin, Spanish Pyrenees
Regional chronostratigraphic synthesis of the Cenomanian-Turonian Oceanic Anoxic Event 2 (OAE2) interval, Western Interior Basin (USA): New Re-Os chemostratigraphy and 40 Ar/ 39 Ar geochronology
Glaciomarine sequence stratigraphy in the Mississippian Río Blanco Basin, Argentina, southwestern Gondwana. Basin analysis and palaeoclimatic implications for the Late Paleozoic Ice Age during the Tournaisian.
Quantitative carbonate sequence stratigraphy: Insights from stratigraphic forward models
Aquifer-eustasy as the main driver of short-term sea-level fluctuations during Cretaceous hothouse climate phases
Abstract A review of short-term (<3 myr: c. 100 kyr to 2.4 myr) Cretaceous sea-level fluctuations of several tens of metres indicates recent fundamental progress in understanding the underlying mechanisms for eustasy, both in timing and in correlation. Cretaceous third- and fourth-order hothouse sea-level changes, the sequence-stratigraphic framework, are linked to Milankovitch-type climate cycles, especially the longer-period sequence-building bands of 405 kyr and 1.2 myr. In the absence of continental ice sheets during Cretaceous hothouse phases (e.g. Cenomanian–Turonian), growing evidence indicates groundwater-related sea-level cycles: (1) the existence of Milankovitch-type humid-arid climate oscillations, proven via intense humid weathering records during times of regression and sea-level lowstands; (2) missing or inverse relationships of sea-level and the marine δ 18 O archives, i.e. the lack of a pronounced positive excursion, cooling signal during sea-level lowstands; and (3) the anti-phase relationship of sea and lake levels, attesting to high groundwater levels and charged continental aquifers during sea-level lowstands. This substantiates the aquifer-eustasy hypothesis. Rates of aquifer-eustatic sea-level change remain hard to decipher; however, reconstructions range from a very conservative minimum estimate of 0.04 mm a −1 (longer time intervals) to 0.7 mm a −1 (shorter, probably asymmetric cycles). Remarkably, aquifer-eustasy is recognized as a significant component for the Anthropocene sea-level budget.
Sequence stratigraphy of the lacustrine rift basin in the Paleogene system of the Bohai Sea area: Architecture mode, deposition filling pattern, and response to tectonic rifting processes
Interaction between sea-level changes and depositional tectonics: Implications for hydrocarbon prospectivity in the western coastal swamp depobelt, Niger Delta Basin, Nigeria
Late Quaternary sequence stratigraphy as a tool for groundwater exploration: Lessons from the Po River Basin (northern Italy)
ABSTRACT This contribution integrates lithologic, mineralogical, geochemical, and geomechanical data from cores and outcrops, and emphasizes where and how sedimentology may help the exploration of self-sourced unconventional reservoirs. In fact, the activity in the unconventional plays has boosted the research on the sedimentology of mudstones to better define the sweet spots and the landing zones sought by industry. This chapter describes the stratigraphic architecture of the Vaca Muerta-Quintuco system (prograding clinoforms ~150 km long and 300 m high), the lithology per sector (e.g., carbonate in the topsets, marlstone in the foresets, mudstone in the bottomsets), and reconstruct genetically-related facies defining a depositional model where sediment arrives from topset and currents move it basinward into a suboxic environment of deposition. The stratigraphic framework created is then populated with rock characteristics to create a play concept and define sweet spots and landing zones.
ABSTRACT The Vaca Muerta Formation consist of outer ramp to basinal facies in a mixed siliciclastic–carbonate creating an organic-rich section up to 500 m thick. This chapter documents stratal terminations, main bounding surfaces, and stacking patterns of the Vaca Muerta–Quintuco system as a means to establish a new sequence stratigraphic framework. The data set comprises more than 500 wells and a basin-scale seismic coverage that spans 30,000 km 2 Regional seismic interpretations and well correlations were calibrated with well geochemical data and acoustic impedance seismic sections. Twelve high-frequency depositional sequences (HFS) with variable combinations of systems tracts were defined and grouped in three low-frequency depositional sequences (LFS). Within this sequence stratigraphic framework, the Vaca Muerta Formation includes organic-rich (total organic carbon, TOC > 2wt. %) and organic-poor intervals (TOC < 2wt. %) At a high-frequency scale, the organic-rich intervals with the highest concentration of TOC belong to transgressive systems tracts and the lower sections within clinoform bottomset and foreset of highstand systems tracts. These condensed sections usually show the best reservoir properties in the self-sourced unconventional play. Conversely, organic-poor intervals are found in the foresets of falling-stage systems tracts and lowstand systems tracts. Condensed sections of each sequence allow subdivide the unconventional play in a stacking of 12 organic-rich Vaca Muerta units (OVM, TOC ≥ 2wt. %). The lowermost eight OVM units correspond to the main tested landing zones. Moreover, a detailed map of shelf breaks reveals a strong three-dimensional (3-D) spatial variability, which is summarized in four groups of plan-view geometries. The 3-D spatial variability of the organic-rich intervals is analyzed at local scale in two cases with different plan-view geometries. At regional scale, thickness maps of the main OVM units allow infer stratigraphic controls (e.g., systems tracts, previous clinoform paleo-topography) and tectonic controls, both regional (morphostructural domains) and local (subsidence axes and paleo-highs), active during the deposition of the Vaca Muerta Formation. The proposed sequence stratigraphic framework provides a predictive understanding of 3-D spatial distribution of the organic-rich intervals in subsurface assessments for the Vaca Muerta play and is applicable to the exploration of other analogous (mixed siliciclastic-carbonate systems) self-sourced unconventional resources.