Larson, R. L. et al. (1990): Paleolatitudes and tectonic reconstructions of the oldest portion of the Pacific Plate; a comparative study

Leg/Site/Hole:
ODP 129
ODP 144
ODP 129 801
ODP 185 801
Identifier:
1993-027830
georefid

10.2973/odp.proc.sr.129.144.1992
doi

Creator:
Larson, R. L.
University of Rhode Island, Graduate School of Oceanography, Narragansett, RI, United States
author

Steiner, M. B.
Universite Pierre et Marie Curie, Paris, France
author

Erba, E.
Ocean Drilling Program, College Station, TX, United States
author

Lancelot, Y.
University of California at Santa Cruz, Santa Cruz, CA, United States
author

Identification:
Paleolatitudes and tectonic reconstructions of the oldest portion of the Pacific Plate; a comparative study
1990
In: Larson, Roger L., Lancelot, Yves, Fisher, Andrew, Abrams, Lewis, Behl, Richard, Busch, William H., Cameron, Gordon, Castillo, Paterno R., Covington, James M., Duerr, Gabriele, Erba, Elisabetta, Floyd, Peter A., France-Lanord, Christian, Hauser, Ernst H., Karl, Susan M., Karpoff, Anne-Marie, Matsuoka, Atsushi, Molinie, Alain, Ogg, James G., Salimullah, A. R. M., Steiner, Maureen, Wallick, Brian P., Wightman, Winton, Dearmont, Lona Haskins (editor), McQuistion, Nancy K. (editor), Proceedings of the Ocean Drilling Program; scientific results; Old Pacific crust; covering Leg 129 of the cruises of the drilling vessel JOIDES Resolution, Apra Harbor, Guam, to Apra Harbor, Guam, sites 800-802, 20 November 1989-18 January 1990
Texas A & M University, Ocean Drilling Program, College Station, TX, United States
129
615-631
Coverage:Geographic coordinates:
North:35.0000
West:144.0000East: 172.3000
South:5.3000

Solid-earth geophysics; Jurassic; Leg 129; Leg 144; magnetic anomalies; magnetic inclination; magnetization; mantle; Mesozoic; North Pacific; Northwest Pacific; Ocean Drilling Program; ocean floors; ODP Site 801; Pacific Ocean; Pacific Plate; paleoecology; paleolatitude; paleomagnetism; Pigafetta Basin; plate rotation; plate tectonics; polar wandering; reconstruction; remanent magnetization; seamounts; skewness; statistical analysis; tectonics; West Pacific;

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