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all geography including DSDP/ODP Sites and Legs
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Africa
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Central Africa
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Congo Democratic Republic
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Shaba Congo Democratic Republic (1)
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Arctic region
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Greenland (2)
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Canada
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Ontario
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Europe
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oxygen
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fossils
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Primary terms
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Africa
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Australasia
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Australia
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Canada
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carbon
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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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Rotaliacea
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Elphidium
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Elphidium excavatum (1)
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isostasy (1)
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isotopes
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C-14 (1)
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stable isotopes
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O-18/O-16 (1)
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noble gases
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radon
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Rn-222 (1)
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North America
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Appalachians (1)
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Great Lakes
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Great Lakes region (5)
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Saint Elias Mountains (1)
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Northern Hemisphere (2)
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Ocean Drilling Program
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Leg 105 (1)
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Leg 152 (1)
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oceanography (1)
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oxygen
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O-18/O-16 (1)
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Pacific Ocean
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Gulf of Alaska (2)
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North Pacific
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Gulf of Alaska (2)
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Permian
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Lower Permian (2)
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upper Paleozoic (1)
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palynomorphs (1)
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Plantae
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plate tectonics (2)
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rock formations
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sedimentary rocks
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sedimentary rocks
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limestone
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coquina (1)
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clastic rocks
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conglomerate (2)
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sedimentary structures
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planar bedding structures
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hummocky cross-stratification (1)
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soft sediment deformation (1)
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sediments
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mud (1)
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marine sediments (1)
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tempestite (1)
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soils
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soils (1)
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GeoRef Categories
Era and Period
Epoch and Age
Date
Availability
Subaqueous debrites of the Grand ConglomÉrat Formation, Democratic Republic of Congo: A model for anomalously thick Neoproterozoic: “Glacial” diamictites
Reply to the comment by H.A.J. Russell on “Converging ice streams: a new paradigm for reconstructions of the Laurentide Ice Sheet in southern Ontario and deposition of the Oak Ridges Moraine”
Permian-Carboniferous Tectono-Stratigraphic Evolution and Petroleum Potential of the Northern Canning Basin, Western Australia
Architectural element analysis applied to glacial deposits: Internal geometry of a late Pleistocene till sheet, Ontario, Canada
Bedrock Structure Control on Soil-Gas Radon-222 Anomalies in the Toronto Area, Ontario, Canada
Passive margin uplift around the North Atlantic region and its role in Northern Hemisphere late Cenozoic glaciation: Comment and Reply
Passive margin uplift around the North Atlantic region and its role in Northern Hemisphere late Cenozoic glaciation
Full article available in PDF version.
Full article available in PDF version.
Full article available in PDF version.
Late Pleistocene-Holocene lake-level fluctuations and paleoclimates at Canandaigua Lake, New York
Full article available in PDF version.
Full article available in PDF version.
Inverse relation between ice extent and the late Paleozoic glacial record of Gondwana
Seismic reflection, borehole and outcrop geometry of Late Wisconsin tills at a proposed landfill near Toronto, Ontario
Thermoluminescence chronology of Toronto-area Quaternary sediments and implications for the extent of the midcontinent ice sheet(s)
Timing of late Cenozoic tidewater glaciation in the far North Pacific
The sedimentary and biological record of the last interglacial-glacial transition at Toronto, Canada
A substantial Sangamon interglacial (isotope stage 5) and subsequent Wisconsin glacial sedimentary record is preserved at Toronto, Canada. The age of individual stratigraphic units is poorly constrained, however. An interglacial sequence records climatic deterioration from warm temperate to subarctic. The interglacial Don Beds, resting on a presumed Illinoian till, were deposited on a storm-influenced shoreface of an ancestral Lake Ontario in water depths that increased over the recorded time interval from about 2 to 20 m. Pollen and faunal analyses identify a climatic deterioration in the upper Don from warm-temperate conditions, with mean annual temperatures some 2 °C warmer than at present, to cool temperate, with temperatures lowered by about 3 °C. Continued cooling is recorded in overlying deeper-water deltaic sediments of the Scarborough Formation, but later climatic amelioration and the return of mixed forest are suggested by the pollen record and by caddisfly fauna. The youngest deltaic sediments, lying immediately below a Wisconsin glacial complex, were deposited in a subarctic setting in an ice-dammed lake, with local mean annual temperatures depressed by at least 7 °C. This chapter identifies the likely continuity of the Don Beds and Scarborough Formation and places them in an expanded “Sangamon” interglacial possibly equivalent to the whole of stage 5 (i.e., 130–75 ka). The biological record at Toronto for this stage indicates one or more phases of cooling when continental-glacier ice may have developed in North America; this record can be favorably compared with the marine oxygen-isotope record with its evidence of increased global ice volumes during stage 5. The subsequent Wisconsin record at Toronto is not well constrained by radiometric age dating but indicates that maximum regional expansion of the Laurentide Ice Sheet in the eastern Great Lakes area occurred after 25 ka.