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all geography including DSDP/ODP Sites and Legs
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Primary terms
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IPOD
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Invertebrata
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isotopes
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mantle (1)
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Mesozoic
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metals
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neodymium
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North America
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Ocean Drilling Program
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Leg 178
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Leg 192
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ODP Site 1186 (1)
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oxygen
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Pacific Ocean
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Equatorial Pacific (1)
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Mid-Pacific Mountains (1)
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Northeast Pacific
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Gulf of Alaska (1)
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Northwest Pacific (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 (1)
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Ontong Java Plateau (1)
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marine sediments (5)
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Southern Ocean
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Bellingshausen Sea (1)
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tectonics (1)
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United States
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sedimentary rocks
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sedimentary rocks
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turbidite (2)
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sedimentary structures
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sedimentary structures
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soft sediment deformation (1)
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sediments
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contourite (1)
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sediments
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clastic sediments
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drift (1)
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marine sediments (5)
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turbidite (2)
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GeoRef Categories
Era and Period
Epoch and Age
Book Series
Date
Availability
Bellingshausen abyssal plain
Paleobathymetric reconstruction with site locations. Red outlines denote si... Available to Purchase
Morphology and sedimentary processes on the continental slope off Pine Island Bay, Amundsen Sea, West Antarctica Available to Purchase
Vigorous deep-sea currents cause global anomaly in sediment accumulation in the Southern Ocean Available to Purchase
Variations in ice-sheet dynamics along the Amundsen Sea and Bellingshausen Sea West Antarctic Ice Sheet margin Available to Purchase
Piercement Structures in Deep Oceans Available to Purchase
Petroleum Prospects of the Deep Offshore Available to Purchase
Morphology and Acoustic Character of the Antarctic Wilkes Land Turbidite Systems: Ice-Sheet-Sourced Versus River-Sourced Fans Available to Purchase
Constraining sources and relative flow rates of bottom waters in the Late Cretaceous Pacific Ocean Available to Purchase
Tectonic and climatic influence on the evolution of the Surveyor Fan and Channel system, Gulf of Alaska Open Access
Mantle upwelling after Gondwana subduction death explains anomalous topography and subsidence histories of eastern New Zealand and West Antarctica Available to Purchase
A deep-sea foraminiferal assemblage scattered through the late Cenozoic of Antarctic Peninsula and its biostratigraphic and biogeographic implications Available to Purchase
FORAMINIFERA IN TWO INLETS FED BY A TIDEWATER GLACIER, KING GEORGE ISLAND, ANTARCTIC PENINSULA Available to Purchase
Glacial Eustasy During the Cenozoic: Sequence Stratigraphic Implications Available to Purchase
LIVING FORAMINIFERA IN THE SHALLOW WATERS OF ADMIRALTY BAY: DISTRIBUTIONS AND ENVIRONMENTAL FACTORS Available to Purchase
Prediction of the ocean water sound speeds via attribute-guided seismic waveform inversion Available to Purchase
Continental Margins—Classification and Petroleum Prospects Available to Purchase
Sediment drifts and deep-sea channel systems, Antarctic Peninsula Pacific Margin Available to Purchase
Abstract Twelve sedimentary mounds are identified on the upper continental rise of the Pacific Margin of the Antarctic Peninsula. All these mounds are produced by a varying degree of interaction of along-slope bottom water flow with down-slope turbidity currents. These mounds provide a complete range of intermediates between two end members: the sediment drift and the channel levee. Surface sediments on drift 7 suggest that the mechanisms for the supply and transport of sediment include entrainment of material from turbidity currents within ambient bottom currents, and pelagic settling from the sea surface, including biogenic and glacially derived material. The long-lasting activity of these mechanisms is documented by the data provided by four DSDP and ODP drill sites. Bathymetric and seismic data, both at a large, comprehensive scale and at a small, detailed scale, show the geometry of the sedimentary mounds and their relationships with the adjacent turbidity current channel systems. These data allow the determination of some diagnostic criteria to identify the sediment drifts.