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Savrda, Charles E. et al. (2001): Ichnofabrics of a Pleistocene slope succession, New Jersey margin; relations to climate and sea-level dynamics
Leg/Site/Hole:
Related Expeditions:
ODP 174A
ODP 174A 1073
Identifier:
ID:
2001-051273
Type:
georefid
Creator:
Name:
Savrda, Charles E.
Affiliation:
Auburn University, Department of Geology and Geography, Auburn, AL, United States
Role:
author
Name:
Krawinkel, Hannelore
Affiliation:
Universitaet Stuttgart, Federal Republic of Germany
Role:
author
Name:
McCarthy, Francine M. G.
Affiliation:
Brock University, Canada
Role:
author
Name:
McHugh, Cecilia M. G.
Affiliation:
City University of New York, Queens College, United States
Role:
author
Name:
Olson, Hilary C.
Affiliation:
University of Texas at Austin, United States
Role:
author
Name:
Mountain, Gregory
Affiliation:
Lamont-Doherty Earth Observatory, United States
Role:
author
Identification:
Title:
Ichnofabrics of a Pleistocene slope succession, New Jersey margin; relations to climate and sea-level dynamics
Year:
2001
Source:
Palaeogeography, Palaeoclimatology, Palaeoecology
Publisher:
Elsevier, Amsterdam, Netherlands
Volume:
171
Issue:
1-2
Pages:
41-61
Abstract:
Language:
English
Genre:
Serial
Rights:
URL:
Coverage:
Geographic coordinates:
North:39.1331
West:-72.1633
East: -72.1633
South:39.1331
Keywords:
Quaternary geology; Atlantic Ocean; biogenic structures; biostratigraphy; bioturbation; burrows; Cenozoic; chronostratigraphy; clastic sediments; climate change; continental margin; continental margin sedimentation; continental slope; cores; Cruziana; currents; geochemistry; Glossifungites; ichnofabric; ichnofossils; inner slope; isotope ratios; isotopes; Leg 174A; lithofacies; marine environment; marine sedimentation; marine sediments; microfossils; New Jersey; North Atlantic; Northwest Atlantic; O-18/O-16; Ocean Drilling Program; ODP Site 1073; oxygen; paleoclimatology; palynomorphs; Phycosiphon; Pleistocene; Quaternary; Schaubcylindrichnus; sea-level changes; sedimentary structures; sedimentation; sedimentation rates; sediments; shelf environment; siliciclastics; stable isotopes; taphonomy; textures; Thalassinoides; turbidity currents; United States; upper Pleistocene;
.
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