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Lund, S. et al. (2010): Biological control of paleomagnetic remanence acquisition in carbonate framework rocks of the Tahiti coral reef
Leg/Site/Hole:
Related Expeditions:
IODP 310
IODP 310 M0005
IODP 310 M0007
IODP 310 M0015
IODP 310 M0016
IODP 310 M0017
IODP 310 M0018
Identifier:
ID:
2011-006460
Type:
georefid
ID:
10.1016/j.epsl.2010.07.010
Type:
doi
Creator:
Name:
Lund, S.
Affiliation:
University of Southern California, Department of Earth Sciences, Los Angeles, CA, United States
Role:
author
Name:
Platzman, E.
Affiliation:
Aix-Marseille Universite, France
Role:
author
Name:
Thouveny, N.
Affiliation:
Role:
author
Name:
Camoin, G.
Affiliation:
Role:
author
Name:
Corsetti, F.
Affiliation:
Role:
author
Name:
Berelson, W.
Affiliation:
Role:
author
Identification:
Title:
Biological control of paleomagnetic remanence acquisition in carbonate framework rocks of the Tahiti coral reef
Year:
2010
Source:
Earth and Planetary Science Letters
Publisher:
Elsevier, Amsterdam, Netherlands
Volume:
298
Issue:
1-2
Pages:
14-22
Abstract:
Language:
English
Genre:
Serial
Rights:
URL:
Coverage:
Geographic coordinates:
North:-17.3900
West:-149.3300
East: -149.3300
South:-17.4600
Keywords:
Solid-earth geophysics; Quaternary geology; alternating field demagnetization; anhysteretic remanent magnetization; bacteria; biofilms; biogenic processes; calcium carbonate; carbonate rocks; Cenozoic; characteristic remanent magnetization; cores; demagnetization; East Pacific; Expedition 310; French Polynesia; hysteresis; Integrated Ocean Drilling Program; IODP Site M0005; IODP Site M0007; IODP Site M0015; IODP Site M0016; IODP Site M0017; IODP Site M0018; isothermal remanent magnetization; limestone; magnetic inclination; magnetization; Maraa; microbialite; natural remanent magnetization; Oceania; oxides; Pacific Ocean; paleomagnetism; Pleistocene; Polynesia; precipitation; Quaternary; reefs; remanent magnetization; sea-level changes; sedimentary rocks; Society Islands; South Pacific; Southeast Pacific; Tahiti; Tahiti Sea Level Expedition; thermal demagnetization; titanomagnetite; upper Pleistocene;
.
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