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NARROW
GeoRef Subject
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all geography including DSDP/ODP Sites and Legs
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Arctic Ocean (1)
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Asia
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Far East
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China
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Xinjiang China
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Tarim Basin (1)
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Popigay Structure (1)
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Siberia (1)
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Atlantic Ocean
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North Atlantic
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Blake Plateau
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Blake Nose (1)
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Labrador Sea (1)
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Northeast Atlantic
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Iberian abyssal plain (1)
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Porcupine Seabight (1)
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Northwest Atlantic
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Demerara Rise (1)
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Rockall Bank (1)
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South Atlantic
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Angola Basin (1)
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Commonwealth of Independent States
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Russian Federation
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Popigay Structure (1)
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Indian Ocean
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Exmouth Plateau (1)
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Ninetyeast Ridge (1)
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Kerguelen Plateau (1)
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North America (1)
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Pacific Ocean
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East Pacific
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Northeast Pacific
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Gulf of Alaska (3)
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North Pacific
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Bering Sea (1)
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Northeast Pacific
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Gulf of Alaska (3)
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Northwest Pacific
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Emperor Seamounts
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Detroit Seamount (3)
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Hess Rise (1)
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Shatsky Rise (1)
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South Pacific
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Southwest Pacific
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Lord Howe Rise (1)
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West Pacific
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Northwest Pacific
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Emperor Seamounts
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Detroit Seamount (3)
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Hess Rise (1)
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Shatsky Rise (1)
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Southwest Pacific
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Lord Howe Rise (1)
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Southern Ocean
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Weddell Sea
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Maud Rise (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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isotope ratios (6)
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isotopes
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stable isotopes
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C-13/C-12 (1)
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Nd-144/Nd-143 (1)
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O-18/O-16 (4)
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metals
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platinum group
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iridium (1)
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rare earths
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neodymium
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Nd-144/Nd-143 (1)
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oxygen
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O-18/O-16 (4)
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fossils
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Chordata
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Vertebrata
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Pisces (1)
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Invertebrata
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Protista
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Foraminifera
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Rotaliina
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Globigerinacea
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Neogloboquadrina
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Neogloboquadrina pachyderma (1)
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microfossils (5)
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palynomorphs
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Dinoflagellata (2)
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miospores
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pollen (1)
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Plantae
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algae
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nannofossils (1)
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geochronology methods
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Ar/Ar (2)
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paleomagnetism (1)
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U/Pb (1)
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geologic age
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Cenozoic
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lower Cenozoic (1)
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Quaternary
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Pleistocene
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Old Crow Tephra (1)
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upper Pleistocene
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Eemian (1)
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Weichselian
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upper Weichselian
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Allerod (1)
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Bolling (1)
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Younger Dryas (1)
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upper Quaternary (2)
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Tertiary
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Neogene
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Miocene (3)
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upper Pliocene (1)
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Paleogene
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lower Oligocene (1)
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Mesozoic
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Cretaceous
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MIS 6 (1)
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upper Precambrian
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igneous rocks
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volcanic rocks
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basalts (1)
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pyroclastics (2)
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volcanic ash (2)
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metamorphic rocks
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metamorphic rocks
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phyllonites (1)
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minerals
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silicates
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chain silicates
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clinopyroxene (1)
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framework silicates
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silica minerals
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coesite (1)
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quartz (1)
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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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Primary terms
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absolute age (2)
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Arctic Ocean (1)
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Asia
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Far East
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China
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Xinjiang China
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Tarim Basin (1)
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Popigay Structure (1)
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Siberia (1)
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Atlantic Ocean
-
North Atlantic
-
Blake Plateau
-
Blake Nose (1)
-
-
Labrador Sea (1)
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Northeast Atlantic
-
Iberian abyssal plain (1)
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Porcupine Seabight (1)
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Northwest Atlantic
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Demerara Rise (1)
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Rockall Bank (1)
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South Atlantic
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Angola Basin (1)
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biogeography (1)
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carbon
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C-13/C-12 (1)
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Cenozoic
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lower Cenozoic (1)
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Quaternary
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Holocene
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Preboreal (1)
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Pleistocene
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middle Pleistocene (1)
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Old Crow Tephra (1)
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upper Pleistocene
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Eemian (1)
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Weichselian
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upper Weichselian
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Allerod (1)
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Bolling (1)
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Younger Dryas (1)
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upper Quaternary (2)
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Tertiary
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Neogene
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Miocene (3)
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upper Pliocene (1)
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Paleogene
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Eocene
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upper Eocene (1)
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Oligocene
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lower Oligocene (1)
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Chordata
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Vertebrata
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Pisces (1)
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climate change (3)
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crust (1)
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Deep Sea Drilling Project
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IPOD
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Leg 62
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DSDP Site 464 (1)
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DSDP Site 465 (1)
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Leg 73
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DSDP Site 522 (1)
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Leg 78A
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DSDP Site 543 (1)
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Leg 90
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DSDP Site 592 (1)
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Leg 12
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DSDP Site 111 (1)
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Leg 19
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DSDP Site 192 (1)
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geochemistry (1)
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glacial geology (1)
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heat flow (1)
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igneous rocks
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volcanic rocks
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basalts (1)
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pyroclastics (2)
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Indian Ocean
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Exmouth Plateau (1)
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Ninetyeast Ridge (1)
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Integrated Ocean Drilling Program
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Expedition 307
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IODP Site U1318 (1)
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Expedition 323
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IODP Site U1339 (1)
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IODP Site U1345 (1)
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Expedition 341
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IODP Site U1417 (1)
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IODP Site U1418 (1)
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Invertebrata
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Protista
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Foraminifera
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Rotaliina
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Globigerinacea
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Neogloboquadrina
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Neogloboquadrina pachyderma (1)
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-
-
-
-
-
isotopes
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stable isotopes
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C-13/C-12 (1)
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Nd-144/Nd-143 (1)
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O-18/O-16 (4)
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Mesozoic
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Cretaceous
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Upper Cretaceous
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Cenomanian (1)
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Turonian (1)
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metals
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platinum group
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iridium (1)
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rare earths
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neodymium
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Nd-144/Nd-143 (1)
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metamorphic rocks
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phyllonites (1)
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metamorphism (1)
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North America (1)
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ocean circulation (1)
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Ocean Drilling Program
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Leg 105
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ODP Site 647 (1)
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Leg 110
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ODP Site 672 (1)
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ODP Site 674 (1)
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Leg 113
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ODP Site 689 (1)
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Leg 114
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ODP Site 699 (1)
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ODP Site 703 (1)
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Leg 115
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ODP Site 709 (1)
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Leg 119
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ODP Site 738 (1)
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ODP Site 744 (1)
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Leg 121
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ODP Site 757 (1)
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Leg 122
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ODP Site 762 (1)
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ODP Site 763 (1)
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Leg 125
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ODP Site 782 (1)
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ODP Site 786 (1)
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Leg 145
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ODP Site 882 (1)
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ODP Site 883 (3)
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ODP Site 884 (4)
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ODP Site 885 (2)
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ODP Site 886 (1)
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ODP Site 887 (5)
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Leg 149
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ODP Site 900 (1)
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Leg 152 (1)
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Leg 162
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ODP Site 982 (1)
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Leg 171B
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ODP Site 1050 (1)
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ODP Site 1053 (1)
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Leg 174A
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ODP Site 1073 (1)
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Leg 177
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ODP Site 1090 (1)
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Leg 198
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ODP Site 1208 (1)
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Leg 207
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ODP Site 1258 (1)
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ODP Site 1259 (1)
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ODP Site 1260 (1)
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ocean floors (1)
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oxygen
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O-18/O-16 (4)
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Pacific Ocean
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East Pacific
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Northeast Pacific
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Gulf of Alaska (3)
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North Pacific
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Bering Sea (1)
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Northeast Pacific
-
Gulf of Alaska (3)
-
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Northwest Pacific
-
Emperor Seamounts
-
Detroit Seamount (3)
-
-
Hess Rise (1)
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Shatsky Rise (1)
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-
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South Pacific
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Southwest Pacific
-
Lord Howe Rise (1)
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-
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West Pacific
-
Northwest Pacific
-
Emperor Seamounts
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Detroit Seamount (3)
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Hess Rise (1)
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Shatsky Rise (1)
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Southwest Pacific
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Lord Howe Rise (1)
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paleoclimatology (3)
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paleoecology (1)
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paleomagnetism (1)
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Paleozoic (1)
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palynomorphs
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miospores
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permafrost (1)
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Plantae
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algae
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nannofossils (1)
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plate tectonics (1)
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Precambrian
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upper Precambrian
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sedimentary rocks
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carbonate rocks
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chalk (1)
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clastic rocks
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sedimentation (3)
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sediments
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clastic sediments
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dust (2)
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marine sediments (5)
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Southern Ocean
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tectonics (1)
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tektites (1)
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weathering (1)
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sedimentary rocks
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sedimentary rocks
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carbonate rocks
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chalk (1)
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clastic rocks
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black shale (1)
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sediments
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sediments
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clastic sediments
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dust (2)
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marine sediments (5)
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Leg 145
North Pacific warmth synchronous with the Miocene Climatic Optimum
Detrital glass in a Bering Sea sediment core yields a ca. 160 ka Marine Isotope Stage 6 age for Old Crow tephra
Mechanism for enhanced eolian dust flux recorded in North Pacific Ocean sediments since 4.0 Ma: Aridity or humidity at dust source areas in the Asian interior?
Review of recent developments in aeolian dust signals of sediments from the North Pacific Ocean based on magnetic minerals
Additional observations of Spiniferites alaskensis from topotype material
Dynamic deep-water circulation in the northwestern Pacific during the Eocene: Evidence from Ocean Drilling Program Site 884 benthic foraminiferal stable isotopes (δ 18 O and δ 13 C)
Convection of North Pacific deep water during the early Cenozoic
In order to better define the late Eocene clinopyroxene-bearing (cpx) spherule layer and to determine how the ejecta vary with distance from the presumed source crater (Popigai), we searched for the layer at 23 additional sites. We identified the layer at six (maybe seven) of these sites: Deep Sea Drilling Project (DSDP) and Ocean Drilling Program (ODP) Holes 592, 699A, 703A, 709C, 786A, 1090B, and probably 738B. The cpx spherule layer occurs in magnetochron 16n.1n, which indicates an age of ca. 35.4 ± 0.1 Ma for the layer. We found the highest abundance of cpx spherules and associated microtektites in Hole 709C in the northwest Indian Ocean, and we found coesite and shocked quartz in the cpx spherule layer at this site. We also found coesite in the cpx spherule layer at Site 216 in the northeast Indian Ocean. This is the first time that coesite has been found in the cpx spherule layer, and it provides additional support for the impact origin of this layer. In addition, the discovery of coesite and shocked quartz grains (with planar deformation features [PDFs]) supports the conclusion that the pancake-shaped clay spherules associated with quartz grains exhibiting PDFs are diagenetically altered cpx spherules. An Ir anomaly was found associated with the cpx spherule layer at all four of the new sites (699A, 709C, 738B, 1090B) for which we obtained Ir data. The geometric mean of the Ir fluence for the 12 sites with Ir data is 5.7 ng/cm 2 , which is ~10% of the fluence estimated for the Cretaceous-Tertiary boundary. Based on the geographic distribution of the 23 sites now known to contain the cpx spherule layer, and 12 sites where we have good chronostratigraphy but the cpx spherule layer is apparently absent, we propose that the cpx spherule strewn field may have a ray-like distribution pattern. Within one of the rays, the abundance of spherules decreases and the percent microtektites increases with distance from Popigai. Shocked quartz and coesite have been found only in this ray at the two sites that are closest to Popigai. At several sites in the Southern Ocean, an increase in δ 18 O in the bulk carbonate occurs immediately above the cpx spherule layer. This increase may indicate a drop in temperature coincident with the impact that produced the cpx spherule layer.