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NARROW
GeoRef Subject
-
all geography including DSDP/ODP Sites and Legs
-
Africa
-
East Africa
-
Kenya
-
Mount Kenya (1)
-
-
Lake Malawi (1)
-
-
East African Lakes
-
Lake Malawi (1)
-
-
North Africa
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Atlas Mountains
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Moroccan Atlas Mountains
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Anti-Atlas (1)
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High Atlas (1)
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-
Morocco
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Moroccan Atlas Mountains
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Anti-Atlas (1)
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High Atlas (1)
-
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Sahara (2)
-
Southern Africa
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South Africa
-
Western Cape Province South Africa (1)
-
-
-
West Africa
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Cameroon (1)
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Mauritania (1)
-
-
-
Antarctica
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Antarctic Peninsula (1)
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Victoria Land (1)
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Vostok Station (1)
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Arctic Ocean
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Barents Sea (5)
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Kara Sea (1)
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Norwegian Sea (3)
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Arctic region
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Greenland
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Disko Island (1)
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Northern Greenland (1)
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Russian Arctic
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Svalbard (2)
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Asia
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Buryat Russian Federation (2)
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Far East
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China
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Japan
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Atlantic Ocean
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Australasia
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Australia (2)
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Baffin Bay (3)
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Newfoundland and Labrador
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Nunavut (2)
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Russian Arctic
-
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-
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Steppes region (2)
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Ukraine
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Crimea Ukraine
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-
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Urals
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Coyote Lake (1)
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Don River (1)
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Europe
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Alps
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Arkhangelsk Russian Federation
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Central Europe
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Germany
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-
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Southern Europe
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Ukraine
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Western Europe
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Ireland (1)
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Netherlands
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Scandinavia
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Finland
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Norway
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Sweden (2)
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United Kingdom
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Great Britain
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Scotland
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Argyllshire Scotland
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Mull Island (1)
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Great Glen Fault (1)
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Hebrides
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Inner Hebrides
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Raasay (2)
-
-
-
Highland region Scotland
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Inverness-shire Scotland
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Isle of Skye (1)
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Raasay (2)
-
-
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Orkney Islands (1)
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Scottish Highlands
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Grampian Highlands (1)
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Scottish Northern Highlands (1)
-
-
-
-
-
-
-
Grand Banks (1)
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Grand Canyon (2)
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Indian Ocean
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Bay of Bengal (1)
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Jordan Valley (1)
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Loch Lomond (2)
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Mediterranean Sea
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East Mediterranean
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Black Sea (6)
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Levantine Basin (1)
-
-
-
Mexico
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Mexico state
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Nevado de Toluca (1)
-
-
-
North America
-
Appalachians
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Northern Appalachians (1)
-
-
Canadian Shield
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Superior Province
-
Wabigoon Belt (1)
-
-
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Glacier National Park (1)
-
Great Lakes
-
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-
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Great Lakes region (1)
-
Great Plains
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Northern Great Plains (4)
-
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Lake Superior region (1)
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Michigan Basin (1)
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North American Cordillera (1)
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Rocky Mountains
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North Island (2)
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Northern Hemisphere (3)
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Owens Valley (1)
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Pacific Ocean
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East Pacific
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North Pacific
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Okhotsk Sea (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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Gulf of Carpentaria (2)
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West Pacific
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Northwest Pacific
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Okhotsk Sea (1)
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South China Sea (1)
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Southwest Pacific
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Gulf of Carpentaria (2)
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Rio Grande (1)
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Russian Platform
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Brazil
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United States
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California
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Michigan
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Santa Fe County New Mexico (1)
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New York
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Finger Lakes
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Onondaga County New York (1)
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Schuyler County New York (1)
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Yates County New York (1)
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commodities
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elements, isotopes
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C-14 (70)
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organic carbon (3)
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chemical ratios (2)
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halogens
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chlorine
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Cl-36 (2)
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hydrogen
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deuterium (1)
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isotope ratios (28)
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isotopes
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radioactive isotopes
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Al-26 (3)
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C-14 (70)
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Cl-36 (2)
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Pb-206/Pb-204 (1)
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Pb-207/Pb-204 (1)
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Pb-208/Pb-204 (1)
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Pb-210 (1)
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-
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stable isotopes
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C-13/C-12 (12)
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D/H (1)
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deuterium (1)
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N-15/N-14 (1)
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Nd-144/Nd-143 (2)
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Ne-21 (1)
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O-18/O-16 (19)
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Pb-206/Pb-204 (1)
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Pb-207/Pb-204 (1)
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Pb-208/Pb-204 (1)
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Sm-147/Nd-144 (1)
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Sr-87/Sr-86 (2)
-
-
-
metals
-
actinides
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thorium
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Th-230 (1)
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alkali metals
-
potassium (1)
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sodium (1)
-
-
alkaline earth metals
-
beryllium
-
Be-10 (19)
-
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calcium
-
Mg/Ca (5)
-
-
magnesium
-
Mg/Ca (5)
-
-
strontium
-
Sr-87/Sr-86 (2)
-
-
-
aluminum
-
Al-26 (3)
-
-
iron (2)
-
lead
-
Pb-206/Pb-204 (1)
-
Pb-207/Pb-204 (1)
-
Pb-208/Pb-204 (1)
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Pb-210 (1)
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molybdenum (2)
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niobium (1)
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platinum group
-
platinum ores (1)
-
-
rare earths
-
neodymium
-
Nd-144/Nd-143 (2)
-
Sm-147/Nd-144 (1)
-
-
samarium
-
Sm-147/Nd-144 (1)
-
-
-
-
nitrogen
-
N-15/N-14 (1)
-
-
noble gases
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neon
-
Ne-21 (1)
-
-
-
oxygen
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O-18/O-16 (19)
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phosphorus (1)
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silicon (1)
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trace metals (2)
-
-
fossils
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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
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Ruminantia
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Bison
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Bison occidentalis (1)
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-
-
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Chiroptera (1)
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Rodentia
-
Myomorpha
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Cricetidae
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Neotoma (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
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Cladocera (1)
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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 (2)
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Diptera
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Chironomidae (3)
-
-
-
-
-
-
-
-
Mollusca
-
Gastropoda (2)
-
-
Protista
-
Foraminifera
-
Rotaliina
-
Cassidulinacea
-
Anomalinidae
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Cibicidoides
-
Cibicidoides wuellerstorfi (1)
-
-
-
-
Globigerinacea
-
Globigerinidae
-
Globigerina
-
Globigerina bulloides (1)
-
-
Globigerinoides
-
Globigerinoides ruber (1)
-
-
-
Neogloboquadrina
-
Neogloboquadrina pachyderma (7)
-
-
-
Rotaliacea
-
Elphidium (1)
-
-
-
-
-
-
microfossils (37)
-
palynomorphs
-
miospores
-
pollen (29)
-
-
-
Plantae
-
algae
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Chlorophyta (2)
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diatoms (5)
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Bryophyta
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Musci
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Sphagnum (2)
-
-
-
Spermatophyta
-
Angiospermae
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Dicotyledoneae
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Betula (2)
-
-
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Gymnospermae
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Coniferales
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Picea (2)
-
Pinaceae
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Abies (1)
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Larix (2)
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Pinus (2)
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-
-
-
-
-
-
geochronology methods
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Ar/Ar (1)
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exposure age (14)
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optically stimulated luminescence (6)
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paleomagnetism (8)
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tephrochronology (6)
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thermoluminescence (1)
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tree rings (1)
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geologic age
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Cenozoic
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Bronze Age (1)
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lower Holocene (14)
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Preboreal (4)
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upper Holocene (3)
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Pleistocene
-
Lake Agassiz (7)
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lower Pleistocene
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Olduvai Subchron (1)
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Matuyama Chron (1)
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middle Pleistocene (1)
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upper Pleistocene
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Barents ice sheet (1)
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Devensian
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upper Devensian (2)
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Lake Iroquois (2)
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Oldest Dryas (1)
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upper Weichselian
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Allerod (34)
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Older Dryas (4)
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Younger Dryas (147)
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-
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Wisconsinan
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upper Wisconsinan (3)
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-
-
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upper Quaternary
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Brunhes Chron (1)
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Pinedale Glaciation (1)
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Stone Age
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Mesolithic (1)
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Paleolithic
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upper Paleolithic (1)
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Tertiary
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Neogene
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Miocene (2)
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Paleogene
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Lake Bonneville (1)
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Laurentide ice sheet (18)
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Mesozoic
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Jurassic
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Middle Jurassic
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Bajocian
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Etive Formation (1)
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MIS 3 (1)
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Paleozoic
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Cambrian (1)
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Ordovician
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Upper Ordovician
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-
-
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Precambrian
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Uinta Mountain Group (1)
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upper Precambrian
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Proterozoic (1)
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igneous rocks
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igneous rocks
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plutonic rocks
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granites (1)
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volcanic rocks
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volcanic ash (2)
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turbidite (3)
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minerals
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carbonates (2)
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native elements
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diamond (1)
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silicates
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amphibole group
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clinoamphibole
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hornblende (1)
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-
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framework silicates
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silica minerals
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opal (2)
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orthosilicates
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nesosilicates
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zircon group
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zircon (1)
-
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upper Weichselian
Late Quaternary fluvial environments at Abo Arroyo, New Mexico, U.S.A.: response to millennial-scale climate change
Some geomorphological implications of recent archaeological investigations on river terraces of the River Dee, Aberdeenshire
Rapid southeastern Laurentide Ice Sheet thinning during the last deglaciation revealed by elevation profiles of in situ cosmogenic 10 Be
Ground-truthing the pyrite trace element proxy in modern euxinic settings
Rapid retreat of the southwestern Laurentide Ice Sheet during the Bølling-Allerød interval
Reply to discussion on ‘Deglaciation and neotectonics in SE Raasay, Scottish Inner Hebrides’, by Smith et al. 2021 ( SJG , 57, 106–116)
Late Weichselian ice-sheet flow directions in the Russian northern Barents Sea from high-resolution imagery of submarine glacial landforms
ABSTRACT Lignin phenol, pollen, and diatom analyses were performed on dated sediments (13,533–8993 cal yr B.P.) recovered from Fallen Leaf Lake, California. This multiproxy data set constrains the end of the Tioga glaciation in the Lake Tahoe Basin and reconstructs the response of the region’s aquatic and terrestrial ecosystems to climatic changes that accompanied the Younger Dryas, the end of the Pleistocene, and early Holocene warming. From the Pleistocene to the Holocene, lignin concentrations and syringyl/vanillyl (S/V) ratios increased, while cinnamyl/vanillyl (C/V) ratios and the lignin phenol vegetation index (LPVI) decreased, recording the proliferation of woody plant material and, particularly, the expansion of angiosperms as the Tioga glaciation ended and temperatures warmed. This interpretation is constrained by lignin phenol analyses of plant material from Fallen Leaf Lake’s present-day watershed. Complementary palynological analyses show a transition from a gymnosperm-dominated landscape to a more mixed angiosperm-gymnosperm vegetation assemblage that formed as closed canopy forests became more open and grasses and aster colonized meadows. Aquatic flora assemblages, in the form of greater amounts of green algae and greater percentages of diatom phytoplankton, indicate increased levels of lake primary productivity in response to warming. Principal component analysis (PCA) distinctly resolves the Pleistocene from the Holocene diatom flora. The Pleistocene flora is dominated by cyclotelloids and low-mantled Aulacoseira species that are rare in Fallen Leaf Lake today, but common at higher and colder elevations that may resemble the Pleistocene Fallen Leaf Lake. The Holocene diatom flora is dominated by Aulacoseira subarctica .
ABSTRACT Lake Coyote, California, which formed in one of five basins along the Mojave River, acted both as a part of the Lake Manix basin and, after the formation of Afton Canyon and draining of Lake Manix ca. 24.5 calibrated (cal) ka, a side basin that was filled episodically for the next 10,000 yr. As such, its record of lake level is an important counterpart to the record of the other terminal basin, Lake Mojave, following the draining of Lake Manix. We studied lake and fluvial deposits and their geomorphology and identified five principal periods of recurring lakes in the Coyote basin by dating mollusks. Several of these periods in detail consist of multiple lake-rise pulses, for which we identified specific fluvial deposits that represent the Mojave River entering the basin. The pulsed record of rapid lake rise and decline is interpreted as switching of the Mojave River between Lake Coyote and Lake Mojave. A composite lake record for both basins shows nearly continuous lake maintenance by the Mojave River from 24.5 cal ka to ca. 14 cal ka. One potential gap in the lake record, ca. 22.7–21.8 cal ka, may indicate either temporary river routing to yet another basin or a dry climatic period. The Mojave River discharge was sufficient to maintain at least one terminal lake throughout most of the Last Glacial Maximum and deglacial periods, indicating that paleoclimate was moist and/or cool well into the Bølling-Allerød and that the lake records may not be sensitive to variations from moderate to high discharge. Nuances of lake-level changes in both the Coyote and Mojave basins are difficult to interpret as paleoclimatic events because the current chronologic control on lake levels from nearshore deposits does not provide the necessary precision. Mojave River avulsion leading to flow to Coyote basin may have been influenced by rupture on a dextral-oblique fault. Earliest post–Lake Manix stream deposits of the Mojave River leading to the Coyote basin are faulted, and most subsequent streams were confined to the downthrown fault block. This fault rupture and possible enhanced river routes to Lake Coyote, rather than Lake Mojave, are bracketed by dated beach deposits to the period ca. 20–19 cal ka. Later, headward erosion through the fluvial plain by the Mojave River eliminated flow to Coyote basin after ca. 14 cal ka and completed incision of the plain after ca. 12 cal ka.
Deglaciation and neotectonics in SE Raasay, Scottish Inner Hebrides
ABSTRACT Extensive glaciers covered the High Atlas mountains in Morocco during the late Pleistocene. On the northern escarpments of the Marrakech High Atlas, a series of cirques perched at ~3000–3500 m above sea level (asl) fed their valley glaciers that, in some cases, extended to as low as 2000 m asl. Cosmogenic exposure dating with 10 Be and 36 Cl has shown that at least three phases of glaciation are preserved in glacial deposits over the last glacial cycle at 50, 22, and 12 ka, which appear to correlate with marine isotope stage (MIS) 3, the global Last Glacial Maximum (LGM), and the Younger Dryas chronozone. This geochronological framework is sufficiently robust to allow for time-constrained glacier-climate reconstructions. The glaciers associated with these three phases of advance had equilibrium line altitudes (ELAs) of 2761 m asl (ca. 50 ka), 2919 m asl (ca. 22 ka), and 3213 m asl (ca. 12 ka). Glacier-climate modeling suggests that all of these phases were driven by both colder temperatures and wetter conditions than today. The dominant moisture supply to these glaciers in all phases would have been sourced from Atlantic depressions. The influence of an extended and enhanced West African monsoon on glacier development during African Humid Periods is unlikely to have been a significant influence on glacier dynamics. The climate conditions associated with the three glacier phases indicate sustained moisture supply to the highest mountain areas when records from other areas, such as the Middle Atlas lakes and marine sediment cores offshore, indicate marked aridity.
ABSTRACT The northward retreat history of the Laurentide ice sheet through the lowlands of the northeastern United States during the last deglaciation is well constrained, but its vertical thinning history is less well known because of the lack of direct constraints on ice thickness through time and space. In addition, the highest elevations in New England are characterized by gently sloping upland surfaces and weathered block fields, features with an uncertain history. To better constrain ice-sheet history in this area and its relationship to alpine geomorphology, we present 20 new 10 Be and seven in situ 14 C cosmogenic nuclide measurements along an elevation transect at Mount Washington, New Hampshire, the highest mountain in the northeastern United States (1917 m above sea level [a.s.l.]). Our results suggest substantially different exposure and erosion histories on the upper and lower parts of the mountain. Above 1600 m a.s.l., 10 Be and in situ 14 C measurements are consistent with upper reaches of the mountain deglaciating by 18 ka. However, some 10 Be ages are up to several times greater than the age of the last deglaciation, consistent with weakly erosive, cold-based ice that did not deeply erode preglacial surfaces. Below 1600 m a.s.l., 10 Be ages are indistinguishable over a nearly 900 m range in elevation and imply rapid ice-surface lowering ca. 14.1 ± 1.1 ka (1 standard deviation; n = 9). This shift from slow thinning early in the deglaciation on the upper part of the mountain to abrupt thinning across the lower elevations coincided with accelerated ice-margin retreat through the region recorded by Connecticut River valley varve records during the Bølling interstadial. The Mount Washington cosmogenic nuclide vertical transect and the Connecticut River valley varve record, along with other New England cosmogenic nuclide records, suggest rapid ice-volume loss in the interior northeastern United States in response to Bølling warming.