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NARROW
GeoRef Subject
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all geography including DSDP/ODP Sites and Legs
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Asia
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Far East
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Philippine Islands
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Luzon (1)
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Atlantic Ocean
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Mid-Atlantic Ridge (1)
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North Atlantic
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Northeast Atlantic (1)
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-
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Australasia
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New Zealand
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Coromandel Peninsula (1)
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Northland New Zealand (1)
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Otago New Zealand
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Oamaru New Zealand (1)
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Taupo volcanic zone (1)
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-
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Canterbury Basin (1)
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International Ocean Discovery Program
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Expedition 349
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IODP Site U1433 (1)
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North Island (2)
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Pacific Ocean
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East Pacific
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Southeast Pacific
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Nazca Ridge (1)
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-
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Equatorial Pacific (1)
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North Pacific
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Northwest Pacific
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Shatsky Rise (1)
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South China Sea (1)
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South Pacific
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Chatham Rise (3)
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Southeast Pacific
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Nazca Ridge (1)
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Southwest Pacific
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Tasman Sea (1)
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-
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West Pacific
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Northwest Pacific
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Shatsky Rise (1)
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South China Sea (1)
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Southwest Pacific
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Tasman Sea (1)
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South Island (5)
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Southern Ocean (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 (2)
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isotopes
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stable isotopes
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C-13/C-12 (1)
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O-18/O-16 (1)
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oxygen
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O-18/O-16 (1)
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-
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fossils
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Chordata
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Vertebrata (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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Globorotaliidae (1)
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-
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Radiolaria (3)
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-
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microfossils (6)
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Plantae
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algae
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Coccolithophoraceae (1)
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diatoms (1)
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-
-
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geologic age
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Cenozoic
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Quaternary
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Pleistocene
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lower Pleistocene (1)
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middle Pleistocene (2)
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-
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Tertiary
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Neogene
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Miocene
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middle Miocene (1)
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upper Miocene (4)
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Pliocene
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lower Pliocene (1)
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upper Pliocene (2)
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-
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Paleogene
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Eocene (1)
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Oligocene (1)
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Paleocene (1)
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-
-
-
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igneous rocks
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igneous rocks
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volcanic rocks
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pyroclastics (1)
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rhyolites (1)
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-
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metamorphic rocks
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turbidite (2)
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Primary terms
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Asia
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Far East
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Philippine Islands
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Luzon (1)
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-
-
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Atlantic Ocean
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Mid-Atlantic Ridge (1)
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North Atlantic
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Northeast Atlantic (1)
-
-
-
Australasia
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New Zealand
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Coromandel Peninsula (1)
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Northland New Zealand (1)
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Otago New Zealand
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Oamaru New Zealand (1)
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Taupo volcanic zone (1)
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-
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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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Quaternary
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Pleistocene
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lower Pleistocene (1)
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middle Pleistocene (2)
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-
-
Tertiary
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Neogene
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Miocene
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middle Miocene (1)
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upper Miocene (4)
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Pliocene
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lower Pliocene (1)
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upper Pliocene (2)
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-
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Paleogene
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Eocene (1)
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Oligocene (1)
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Paleocene (1)
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-
-
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Chordata
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Vertebrata (1)
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climate change (1)
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continental shelf (1)
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continental slope (2)
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Deep Sea Drilling Project
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IPOD
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Leg 90
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DSDP Site 592 (1)
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DSDP Site 593 (2)
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DSDP Site 594 (2)
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Leg 94
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DSDP Site 607 (1)
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-
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Leg 21
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DSDP Site 208 (1)
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Leg 29
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DSDP Site 277 (1)
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DSDP Site 280 (1)
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DSDP Site 283 (1)
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DSDP Site 284 (1)
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geochemistry (1)
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geophysical methods (5)
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igneous rocks
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volcanic rocks
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pyroclastics (1)
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rhyolites (1)
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Integrated Ocean Drilling Program
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Expedition 329
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IODP Site U1370 (1)
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-
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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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Globorotaliidae (1)
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-
-
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Radiolaria (3)
-
-
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isotopes
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stable isotopes
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C-13/C-12 (1)
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O-18/O-16 (1)
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ocean circulation (3)
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Ocean Drilling Program
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Leg 181
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ODP Site 1119 (3)
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ODP Site 1120 (2)
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ODP Site 1121 (1)
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ODP Site 1122 (3)
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ODP Site 1123 (7)
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ODP Site 1124 (2)
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ODP Site 1125 (2)
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Leg 182
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ODP Site 1134 (1)
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Leg 184
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ODP Site 1148 (1)
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-
Leg 198
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ODP Site 1208 (1)
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Leg 201
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ODP Site 1231 (1)
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Leg 202
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ODP Site 1236 (1)
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ODP Site 1237 (1)
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ocean floors (3)
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oxygen
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O-18/O-16 (1)
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Pacific Ocean
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East Pacific
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Southeast Pacific
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Nazca Ridge (1)
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-
-
Equatorial Pacific (1)
-
North Pacific
-
Northwest Pacific
-
Shatsky Rise (1)
-
South China Sea (1)
-
-
-
South Pacific
-
Chatham Rise (3)
-
Southeast Pacific
-
Nazca Ridge (1)
-
-
Southwest Pacific
-
Tasman Sea (1)
-
-
-
West Pacific
-
Northwest Pacific
-
Shatsky Rise (1)
-
South China Sea (1)
-
-
Southwest Pacific
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Tasman Sea (1)
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-
-
-
paleoclimatology (3)
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paleoecology (2)
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paleogeography (1)
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Plantae
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algae
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Coccolithophoraceae (1)
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diatoms (1)
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-
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plate tectonics (1)
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sea water (1)
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sea-level changes (3)
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sedimentary rocks
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clastic rocks
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red beds (1)
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-
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sedimentation (3)
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sediments
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carbonate sediments (1)
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clastic sediments
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clay (1)
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drift (3)
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mud (1)
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sand (1)
-
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marine sediments (5)
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-
Southern Ocean (1)
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tectonics (2)
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-
sedimentary rocks
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contourite (2)
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sedimentary rocks
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clastic rocks
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red beds (1)
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-
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turbidite (2)
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-
sediments
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contourite (2)
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sediments
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carbonate sediments (1)
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clastic sediments
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clay (1)
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drift (3)
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mud (1)
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sand (1)
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marine sediments (5)
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turbidite (2)
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Leg 181
Late Oligocene–Miocene evolution of deep-water circulation in the abyssal South China Sea: Insights from Nd isotopes of fossil fish teeth
The Nazca Drift System – palaeoceanographic significance of a giant sleeping on the SE Pacific Ocean floor
Regional and global signals in seawater δ 18 O records across the mid-Pleistocene transition
Globoconella Pseudospinosa , N. Sp.: a New Early Pliocene Planktonic Foraminifera from the Southwest Pacific
Linking a late Miocene–Pliocene hiatus in the deep-sea Bounty Fan off South Island, New Zealand, to onshore tectonism and lacustrine sediment storage
Off the east coast of South Island, New Zealand, the Bounty Fan lies in the most seaward axial deep of the Bounty Trough, a remnant continental rift. The north levee of the Bounty Channel was cored at Ocean Drilling Program (ODP) Site 1122 on Leg 181. The 617 m section, which is divided into three units and nine subunits, consists of a Quaternary fan turbidite sequence that transitions downward into a Pleistocene to Pliocene mixed turbidite to contourite facies, which unconformably overlies a Miocene contourite-pelagic succession. Petrographic analysis (point counts) of 55 fine to very fine sand samples across the cored interval shows them to be quartzofeldspathic with moderate mica and minor metamorphic lithic components (mean values = Q 44 F 44 L 12 , Qm 50 K 3 P 47 , Lm 70 Lv 4 Ls 26 , total%mica 14 ). Mean recalculated parameters for Site 1122 units and subunits cluster on QFL, QmKP, and LmLvLs ternary plots with little compositional variation. Proportions of biotite, muscovite, chlorite, and various metamorphic lithic types also show little compositional variation among the units and subunits of Site 1122. Furthermore, there are no significant trends among thickness, grain size, composition, and depth of Site 1122 sand samples, except that thicker beds tend to contain slightly more metamorphic rock fragments. The generally homogeneous composition of Site 1122 sand indicates that it may have had a relatively uniform source back into the early Miocene. Thus, the up-section change from sandy contourite to turbidite deposits at Site 1122 is not reflected in sand composition. This suggests that the sand provenance remained constant while the depositional processes of sand at Site 1122 changed. Sand detrital modes at Site 1122 most closely match those of the Clutha River, especially in terms of QFL, QmKP, mica, and lithic proportions, suggesting that it was a major source of sand at Site 1122. However, admixing of sand from the Waitaki River and other sources cannot be completely ruled out.