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NARROW
GeoRef Subject
-
all geography including DSDP/ODP Sites and Legs
-
Africa
-
Afar (2)
-
East Africa
-
Afar Depression (3)
-
Ethiopia
-
Awash Valley (1)
-
Hadar (1)
-
Omo River (1)
-
Omo Valley (1)
-
-
Ethiopian Rift (2)
-
Kenya (2)
-
Tanzania
-
Olduvai Gorge (1)
-
-
Turkana Basin (2)
-
-
East African Rift (1)
-
Nile River (1)
-
Southern Africa
-
Namibia (1)
-
-
-
Antarctica
-
Amundsen Sea (1)
-
Antarctic ice sheet
-
East Antarctic ice sheet (1)
-
-
East Antarctica (2)
-
Lake Vostok (1)
-
Marie Byrd Land (1)
-
Queen Maud Land (1)
-
South Shetland Islands
-
Deception Island (1)
-
-
Victoria Land
-
McMurdo dry valleys (1)
-
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West Antarctica (1)
-
Wilkes Land
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Dome C (1)
-
-
-
Arctic region
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Greenland
-
Northern Greenland (1)
-
-
-
Asia
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Far East
-
Indonesia
-
Java (1)
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Sumatra (1)
-
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Japan (1)
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Philippine Islands
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Luzon (1)
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-
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Indian Peninsula
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India
-
Chhattisgarh India (2)
-
-
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Middle East
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Israel (1)
-
-
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Atlantic Ocean
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North Atlantic
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Caribbean Sea (1)
-
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South Atlantic (1)
-
-
Atlantic Ocean Islands
-
South Sandwich Islands (1)
-
-
Australasia
-
New Zealand
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Waipaoa River (1)
-
-
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Banks Island (1)
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Black Mountain (1)
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Broken Ridge (1)
-
Canada
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Western Canada
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British Columbia (1)
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Northwest Territories (1)
-
Yukon Territory
-
Klondike (1)
-
-
-
-
Caribbean region
-
West Indies
-
Antilles
-
Lesser Antilles
-
Guadeloupe (1)
-
-
-
-
-
Cascade Range (1)
-
Central America
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Costa Rica (2)
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Nicaragua (2)
-
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Circum-Antarctic region (1)
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Death Valley (1)
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Espanola Basin (1)
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Europe
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Carpathian Foredeep (1)
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Carpathians
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Polish Carpathians (1)
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Central Europe
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Germany
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Eifel (1)
-
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Poland
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Polish Carpathians (1)
-
-
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Rhenish Schiefergebirge
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Eifel (1)
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Southern Europe
-
Greece
-
Greek Aegean Islands
-
Cyclades
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Milos (1)
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Santorin (1)
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Thera (2)
-
-
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Sterea Ellas
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Aegina (1)
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Iberian Peninsula
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Spain (1)
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Italy
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Apennines
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Monte Amiata (1)
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Campania Italy
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Phlegraean Fields (1)
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Latium Italy
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Alban Hills (1)
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Rome Italy (1)
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Sicily Italy
-
Hyblean Plateau (1)
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Lipari Islands
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Stromboli (1)
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Mount Etna (3)
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Tuscany Italy
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Monte Amiata (1)
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Western Europe
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France
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Puy-de-Dome France
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Mont-Dore France (1)
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Iceland (2)
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Scandinavia
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Norway (1)
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-
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Glacier Peak (1)
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Hikurangi Margin (1)
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Indian Ocean (1)
-
International Ocean Discovery Program (1)
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Kerguelen Plateau (1)
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Kos (1)
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Mediterranean region
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Aegean Islands
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Greek Aegean Islands
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Cyclades
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Milos (1)
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Santorin (1)
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Thera (2)
-
-
-
-
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Mediterranean Sea
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East Mediterranean (1)
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West Mediterranean
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Tyrrhenian Sea (1)
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North America
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Basin and Range Province (1)
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Glacier National Park (1)
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Great Lakes
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Lake Superior (1)
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Gulf Coastal Plain (1)
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Rio Grande Rift (1)
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Western Interior (1)
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Williston Basin (1)
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North Island (2)
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Northern Hemisphere (1)
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Pacific Ocean
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East Pacific
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Cocos Ridge (1)
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Northeast Pacific
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Middle America Trench (1)
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North Pacific
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Northeast Pacific
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Middle America Trench (1)
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Northwest Pacific
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Japan Trench (1)
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South China Sea (1)
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South Pacific
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Southwest Pacific
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Campbell Plateau (1)
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West Pacific
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Northwest Pacific
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Japan Trench (1)
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Southwest Pacific
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Campbell Plateau (1)
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Pacific region
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Circum-Pacific region (1)
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Scotia Sea Islands
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South Sandwich Islands (1)
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South Shetland Islands
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Deception Island (1)
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South America
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Andes
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Central Andes (1)
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Cotopaxi (1)
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Eastern Cordillera (1)
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Villarrica (1)
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Chile
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Ecuador
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Cotopaxi (1)
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Peru (1)
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Southern Ocean
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Prydz Bay (1)
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Ross Sea
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Taylor Dome (1)
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Texas (1)
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Skamania County Washington
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Snohomish County Washington (1)
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Western U.S. (1)
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Yucatan Peninsula (1)
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commodities
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metal ores
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vanadium ores (1)
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mineral deposits, genesis (1)
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elements, isotopes
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carbon
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C-13/C-12 (1)
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C-14 (8)
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isotope ratios (6)
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isotopes
-
radioactive isotopes
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C-14 (8)
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Cs-137 (2)
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Pb-206/Pb-204 (1)
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Pb-210 (1)
-
-
stable isotopes
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C-13/C-12 (1)
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O-18/O-16 (4)
-
Pb-206/Pb-204 (1)
-
-
-
metals
-
alkali metals
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cesium
-
Cs-137 (2)
-
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-
alkaline earth metals
-
calcium
-
Mg/Ca (1)
-
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magnesium
-
Mg/Ca (1)
-
-
-
iron (1)
-
lead
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Pb-206/Pb-204 (1)
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Pb-210 (1)
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manganese (1)
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rare earths (1)
-
-
oxygen
-
O-18/O-16 (4)
-
-
-
fossils
-
Chordata
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Vertebrata
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Tetrapoda
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Mammalia
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Theria
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Eutheria
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Artiodactyla (1)
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Primates
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Hominidae
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Australopithecinae
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Homo
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Homo sapiens (1)
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simians (1)
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-
-
-
-
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-
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Invertebrata
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Arthropoda
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Mandibulata
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Crustacea
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Ostracoda (1)
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Insecta
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Pterygota
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Neoptera
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Endopterygota
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Coleoptera (1)
-
-
-
-
-
-
-
Mollusca
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Gastropoda (1)
-
-
Protista
-
Foraminifera
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Fusulinina
-
Fusulinidae (1)
-
-
-
-
-
microfossils
-
Conodonta (1)
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Fusulinina
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Fusulinidae (1)
-
-
-
palynomorphs
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miospores
-
pollen (1)
-
-
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Plantae
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algae
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Coccolithophoraceae
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Emiliania
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Emiliania huxleyi (1)
-
-
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nannofossils (1)
-
-
-
-
geochronology methods
-
Ar/Ar (14)
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fission-track dating (3)
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K/Ar (3)
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paleomagnetism (6)
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tephrochronology (15)
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Th/U (3)
-
U/Pb (3)
-
-
geologic age
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Cenozoic
-
Bronze Age (1)
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Koobi Fora Formation (2)
-
Omo Group (1)
-
Quaternary
-
Holocene
-
lower Holocene (2)
-
Neoglacial
-
Little Ice Age (1)
-
-
upper Holocene
-
Little Ice Age (1)
-
-
-
Pleistocene
-
Bandelier Tuff (1)
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Irvingtonian (1)
-
lower Pleistocene
-
Olduvai Subchron (1)
-
-
Matuyama Chron (1)
-
middle Pleistocene (1)
-
upper Pleistocene
-
Weichselian
-
upper Weichselian
-
Younger Dryas (2)
-
-
-
-
-
upper Quaternary
-
Brunhes Chron (1)
-
-
-
Shungura Formation (2)
-
Tertiary
-
Catahoula Formation (1)
-
Neogene
-
Miocene
-
lower Miocene (1)
-
middle Miocene
-
Badenian (1)
-
-
upper Miocene (1)
-
-
Pliocene
-
Hadar Formation (5)
-
-
upper Neogene (1)
-
-
Paleogene
-
Eocene
-
upper Eocene
-
Chadronian (1)
-
-
-
Oligocene
-
lower Oligocene (1)
-
-
Paleocene
-
lower Paleocene
-
K-T boundary (1)
-
-
-
-
-
upper Cenozoic (1)
-
-
Mesozoic
-
Cretaceous
-
Upper Cretaceous
-
Hell Creek Formation (1)
-
Kanguk Formation (1)
-
K-T boundary (1)
-
-
-
Jurassic
-
Upper Jurassic
-
Brushy Basin Member (1)
-
Morrison Formation (1)
-
Salt Wash Sandstone Member (1)
-
-
-
-
Paleozoic
-
Carboniferous
-
Pennsylvanian
-
Middle Pennsylvanian
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Moscovian (1)
-
-
Upper Pennsylvanian
-
Kasimovian (1)
-
-
-
-
Permian (1)
-
upper Paleozoic
-
Dwyka Formation (1)
-
-
-
Precambrian
-
upper Precambrian
-
Proterozoic
-
Mesoproterozoic (2)
-
-
-
-
-
igneous rocks
-
igneous rocks
-
volcanic rocks
-
andesites (1)
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basalts (2)
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dacites (1)
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glasses
-
volcanic glass (6)
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latite (1)
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phonolites (1)
-
pyroclastics
-
ash-flow tuff (1)
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ignimbrite (4)
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pumice (3)
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rhyolite tuff (2)
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tuff (10)
-
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rhyolites (3)
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trachytes (2)
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-
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volcanic ash (9)
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-
metamorphic rocks
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turbidite (2)
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minerals
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carbonates (1)
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halides
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chlorides
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halite (1)
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oxides
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spinel (1)
-
-
silicates
-
chain silicates
-
pyroxene group
-
clinopyroxene (1)
-
-
-
framework silicates
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feldspar group
-
alkali feldspar
-
anorthoclase (1)
-
sanidine (2)
-
-
-
nepheline group
-
nepheline (1)
-
-
zeolite group (1)
-
-
orthosilicates
-
nesosilicates
-
zircon group
-
zircon (5)
-
-
-
-
-
sulfates
-
anhydrite (1)
-
gypsum (1)
-
-
-
Primary terms
-
absolute age (28)
-
Africa
-
Afar (2)
-
East Africa
-
Afar Depression (3)
-
Ethiopia
-
Awash Valley (1)
-
Hadar (1)
-
Omo River (1)
-
Omo Valley (1)
-
-
Ethiopian Rift (2)
-
Kenya (2)
-
Tanzania
-
Olduvai Gorge (1)
-
-
Turkana Basin (2)
-
-
East African Rift (1)
-
Nile River (1)
-
Southern Africa
-
Namibia (1)
-
-
-
Antarctica
-
Amundsen Sea (1)
-
Antarctic ice sheet
-
East Antarctic ice sheet (1)
-
-
East Antarctica (2)
-
Lake Vostok (1)
-
Marie Byrd Land (1)
-
Queen Maud Land (1)
-
South Shetland Islands
-
Deception Island (1)
-
-
Victoria Land
-
McMurdo dry valleys (1)
-
-
West Antarctica (1)
-
Wilkes Land
-
Dome C (1)
-
-
-
Arctic region
-
Greenland
-
Northern Greenland (1)
-
-
-
Asia
-
Far East
-
Indonesia
-
Java (1)
-
Sumatra (1)
-
-
Japan (1)
-
Philippine Islands
-
Luzon (1)
-
-
-
Indian Peninsula
-
India
-
Chhattisgarh India (2)
-
-
-
Middle East
-
Israel (1)
-
-
-
Atlantic Ocean
-
North Atlantic
-
Caribbean Sea (1)
-
-
South Atlantic (1)
-
-
Atlantic Ocean Islands
-
South Sandwich Islands (1)
-
-
Australasia
-
New Zealand
-
Waipaoa River (1)
-
-
-
Canada
-
Western Canada
-
British Columbia (1)
-
Northwest Territories (1)
-
Yukon Territory
-
Klondike (1)
-
-
-
-
carbon
-
C-13/C-12 (1)
-
C-14 (8)
-
-
Caribbean region
-
West Indies
-
Antilles
-
Lesser Antilles
-
Guadeloupe (1)
-
-
-
-
-
Cenozoic
-
Bronze Age (1)
-
Koobi Fora Formation (2)
-
Omo Group (1)
-
Quaternary
-
Holocene
-
lower Holocene (2)
-
Neoglacial
-
Little Ice Age (1)
-
-
upper Holocene
-
Little Ice Age (1)
-
-
-
Pleistocene
-
Bandelier Tuff (1)
-
Irvingtonian (1)
-
lower Pleistocene
-
Olduvai Subchron (1)
-
-
Matuyama Chron (1)
-
middle Pleistocene (1)
-
upper Pleistocene
-
Weichselian
-
upper Weichselian
-
Younger Dryas (2)
-
-
-
-
-
upper Quaternary
-
Brunhes Chron (1)
-
-
-
Shungura Formation (2)
-
Tertiary
-
Catahoula Formation (1)
-
Neogene
-
Miocene
-
lower Miocene (1)
-
middle Miocene
-
Badenian (1)
-
-
upper Miocene (1)
-
-
Pliocene
-
Hadar Formation (5)
-
-
upper Neogene (1)
-
-
Paleogene
-
Eocene
-
upper Eocene
-
Chadronian (1)
-
-
-
Oligocene
-
lower Oligocene (1)
-
-
Paleocene
-
lower Paleocene
-
K-T boundary (1)
-
-
-
-
-
upper Cenozoic (1)
-
-
Central America
-
Costa Rica (2)
-
Nicaragua (2)
-
-
Chordata
-
Vertebrata
-
Tetrapoda
-
Mammalia
-
Theria
-
Eutheria
-
Artiodactyla (1)
-
Primates
-
Hominidae
-
Australopithecinae
-
Australopithecus (1)
-
-
Homo
-
Homo sapiens (1)
-
-
-
simians (1)
-
-
-
-
-
-
-
-
climate change (5)
-
crust (1)
-
crystal chemistry (1)
-
Deep Sea Drilling Project
-
Leg 28 (1)
-
-
deformation (1)
-
earthquakes (4)
-
Europe
-
Carpathian Foredeep (1)
-
Carpathians
-
Polish Carpathians (1)
-
-
Central Europe
-
Germany
-
Eifel (1)
-
-
Poland
-
Polish Carpathians (1)
-
-
-
Rhenish Schiefergebirge
-
Eifel (1)
-
-
Southern Europe
-
Greece
-
Greek Aegean Islands
-
Cyclades
-
Milos (1)
-
Santorin (1)
-
Thera (2)
-
-
-
Sterea Ellas
-
Aegina (1)
-
-
-
Iberian Peninsula
-
Spain (1)
-
-
Italy
-
Apennines
-
Monte Amiata (1)
-
-
Campania Italy
-
Phlegraean Fields (1)
-
-
Latium Italy
-
Alban Hills (1)
-
Rome Italy (1)
-
-
Sicily Italy
-
Hyblean Plateau (1)
-
Lipari Islands
-
Stromboli (1)
-
-
Mount Etna (3)
-
-
Tuscany Italy
-
Monte Amiata (1)
-
-
-
-
Western Europe
-
France
-
Central Massif (1)
-
Puy-de-Dome France
-
Mont-Dore France (1)
-
-
-
Iceland (2)
-
Scandinavia
-
Norway (1)
-
-
-
-
faults (2)
-
geochemistry (8)
-
geochronology (5)
-
geodesy (1)
-
geomorphology (4)
-
glacial geology (2)
-
igneous rocks
-
volcanic rocks
-
andesites (1)
-
basalts (2)
-
dacites (1)
-
glasses
-
volcanic glass (6)
-
-
latite (1)
-
phonolites (1)
-
pyroclastics
-
ash-flow tuff (1)
-
ignimbrite (4)
-
pumice (3)
-
rhyolite tuff (2)
-
tuff (10)
-
-
rhyolites (3)
-
trachytes (2)
-
-
-
Indian Ocean (1)
-
Integrated Ocean Drilling Program
-
Expedition 318 (1)
-
Expedition 340
-
IODP Site U1396 (1)
-
-
-
intrusions (1)
-
Invertebrata
-
Arthropoda
-
Mandibulata
-
Crustacea
-
Ostracoda (1)
-
-
Insecta
-
Pterygota
-
Neoptera
-
Endopterygota
-
Coleoptera (1)
-
-
-
-
-
-
-
Mollusca
-
Gastropoda (1)
-
-
Protista
-
Foraminifera
-
Fusulinina
-
Fusulinidae (1)
-
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tephrostratigraphy
Using Radiometric Dating, Magnetostratigraphy, and Tephrostratigraphy to Calibrate Rates of Hominin Evolution in the East African Rift
A Millennial-Scale Tephra Event-Stratigraphic Record of the South China Sea since the Penultimate Interglacial
Early Pleistocene–to–present paleoclimate archive for the American Southwest from Stoneman Lake, Arizona, USA
Abstract We review here data and information on Antarctic volcanism resulting from recent tephrostratigraphic investigations on marine cores. Records include deep drill cores recovered during oceanographic expeditions: DSDP, ODP and IODP drill cores recovered during ice-based and land-based international cooperative drilling programmes DVDP 15, MSSTS-1, CIROS-1 and CIROS-2, DVDP 15, CRP-1, CRP-2/2A and CRP-3, ANDRILL-MIS and ANDRILL-SMS, and shallow gravity and piston cores recovered in the Antarctic and sub-Antarctic oceans. We report on the identification of visible volcaniclastic horizons and, in particular, of primary tephra within the marine sequences. Where available, the results of analyses carried out on these products are presented. The volcanic material identified differs in its nature, composition and emplacement mechanisms. It was derived from different sources on the Antarctic continent and was emplaced over a wide time span. Marine sediments contain a more complete record of the explosive activity from Antarctic volcanoes and are complementary to those obtained by land-based studies. This record provides important information for volcanological reconstructions including approximate intensities and magnitudes of eruptions, and their duration, age and recurrence, as well as their eruptive dynamics. In addition, characterized tephra layers represent an invaluable chronological tool essential in establishing correlations between different archives and in synchronizing climate records.
Chapter 6.2 Englacial tephras of East Antarctica
Abstract Driven by successful achievements in recovering high-resolution ice records of climate and atmospheric composition through the Late Quaternary, new ice–tephra sequences from various sites of the East Antarctic Ice Sheet (EAIS) have been studied in the last two decades spanning an age range of a few centuries to 800 kyr. The tephrostratigraphic framework for the inner EAIS, based on ash occurrence in three multi-kilometre-deep ice cores, shows that the South Sandwich Islands represent a major source for tephra, highlighting the major role in the ash dispersal played by clockwise circum-Antarctic atmospheric circulation penetrating the Antarctic continent. Tephra records from the eastern periphery of the EAIS, however, are obviously influenced by explosive activity sourced in nearby Antarctic rift provinces. These tephra inventories have provided a fundamental complement to the near-vent volcanic record, in terms of both frequency/chronology of explosive volcanism and of magma chemical evolution through time. Despite recent progress, current data are still sparse. There is a need for further tephra studies to collect data from unexplored EAIS sectors, along with extending the tephra inventory back in time. Ongoing international palaeoclimatic initiatives of ice-core drilling could represent a significant motivation for the tephra community and for Quaternary Antarctic volcanologists.
Chapter 7.4 Active volcanoes in Marie Byrd Land
Abstract Two volcanoes in Marie Byrd Land, Mount Berlin and Mount Takahe, can be considered active, and a third, Mount Waesche, may be as well; although the chronology of activity is less well constrained. The records of explosive activity of these three volcanoes is well represented through deposits on the volcano flanks and tephra layers found in blue ice areas, as well as by the presence of cryptotephra layers found in West and East Antarctic ice cores. Records of effusive volcanism are found on the volcano flanks but some deposits may be obscured by pervasive glacerization of the edifices. Based on a compilation of tephra depths–ages in ice cores, the activity patterns of Mount Takahe and Mount Berlin are dramatically different. Mount Takahe has erupted infrequently over the past 100 kyr. Mount Berlin, by contrast, has erupted episodically during this time interval, with the number of eruptions being dramatically higher in the time interval between c. 32 and 18 ka. Integration of the Mount Berlin tephra record from ice cores and blue ice areas over a 500 kyr time span reveals a pattern of geochemical evolution related to small batches of partial melt being progressively removed from a single source underlying Mount Berlin.
Glass fission-track ages, composition, and origin of tephra beds in the Upper Cretaceous Kanguk Formation, Banks Island, Arctic Canada
Tsunami and tephra deposits record interactions between past eruptive activity and landslides at Stromboli volcano, Italy
Evidence for frequent, large tsunamis spanning locked and creeping parts of the Aleutian megathrust
Abstract Tephra beds are considered to be potential failure planes for submarine landslides. Here, we report on an example of a coarse-ash/lapilli-tuff bed influencing translational slides. The studied mass-transport deposit (MTD) is intercalated in the Pleistocene forearc basin fill exposed in east-central Japan. This MTD consists of stacked siltstone blocks resulting from repeated imbricate thrusts branching from the décollement. The basal slide plane is located immediately below a pumice-rich coarse ash/lapilli-tuff bed. The material comprising the slip zone is injected into the overlying coarse-ash/lapilli-tuff bed, suggesting an upwards escape of excess porewater that resulted from elevated pore pressure. To explain this mode of occurrence, we propose that the detachment preferentially occurred at the top and base of the coarse-ash-tuff-rich interval which appears to have been stronger relative to the adjacent silt-dominated interval. The pumiceous coarse-ash and lapilli-tuff bed behaved as a rigid plate on top of the high-pore-pressure slip zone, which sustained the translational slide on the gentle continental slope. Therefore, in translational submarine landslides, the preferential formation of a slide plane is caused by differing frictional resistances in the layered sediments.
Volcanism of the South Aegean Volcanic Arc
Widespread tephra dispersal and ignimbrite emplacement from a subglacial volcano (Torfajökull, Iceland)
Reconstruction of residual melts from the zeolitized explosive products of alkaline-mafic volcanoes
Chemical and petrographic fingerprinting of volcanic ashes as a tool for high-resolution stratigraphy of the upper Miocene Pisco Formation (Peru)
Abstract Large earthquakes and related tsunamis serve as triggering mechanisms that generate turbidity currents which form turbidites. The event deposits from the recent 2011 Tohoku-oki earthquake and tsunami are observed throughout a wide area along the Pacific coast of Tohoku, northern Japan, extending from the coast through the shelf and slope, to the trench floor. Spatio-temporal correlation of turbidites and other tsunamigenic deposits, such as those generated in the 2011 event, can be used to reconstruct the recurrence history of large earthquakes and tsunamis. Here we use sediment cores and sub-bottom profiles to analyse the depositional setting along the Japan Trench, and show that the environment is ideal for preserving turbidites. The subducting Pacific Plate creates graben or basins along the trench floor that accommodate the episodic deposition of fine-grained turbidites; and interseismic hemipelagic deposits that form with high sedimentation rates along the Japan Trench effectively cover earthquake-induced turbidites and preserve the deposits as a geological record of large earthquakes. Therefore, small deep-sea basins with high sedimentation rates, such as in and around the Japan Trench floor, are favourable environments for studies of turbidite palaeoseismology.