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Stern, R. J. et al. (2008): Did tholeiitic basalts erupt first after initiation of subduction in the IBM system?
Leg/Site/Hole:
Related Expeditions:
DSDP 60
DSDP 60 458
Identifier:
ID:
2011-088862
Type:
georefid
Creator:
Name:
Stern, R. J.
Affiliation:
University of Texas at Dallas, Department of Geosciences, Richardson, TX, United States
Role:
author
Name:
Reagan, Mark K.
Affiliation:
University of Iowa, United States
Role:
author
Name:
Osamu, I.
Affiliation:
Geological Survey of Japan, Japan
Role:
author
Name:
Kelley, K. A.
Affiliation:
University of Rhode Island, United States
Role:
author
Name:
Ohara, Y.
Affiliation:
Hydrographic and Oceanographic Department of Japan, Japan
Role:
author
Name:
Bloomer, S.
Affiliation:
Oregon State University, United States
Role:
author
Name:
Fryer, P.
Affiliation:
University of Hawaii at Manoa, United States
Role:
author
Name:
Hickey-Vargas, R.
Affiliation:
Florida International University, United States
Role:
author
Name:
Ishii, T.
Affiliation:
Fukada Geological Institute, Japan
Role:
author
Name:
Kimura, J.
Affiliation:
Japan Agency for Marine-Earth Science and Technology, Japan
Role:
author
Identification:
Title:
Did tholeiitic basalts erupt first after initiation of subduction in the IBM system?
Year:
2008
Source:
In: Anonymous, AGU 2008 fall meeting
Publisher:
American Geophysical Union, Washington, DC, United States
Volume:
89
Issue:
53, Suppl.
Pages:
Abstract:
Language:
English
Genre:
Rights:
URL:
Coverage:
Geographic coordinates:
North:13.3000
West:144.4000
East: 144.4000
South:13.3000
Keywords:
Igneous and metamorphic petrology; Solid-earth geophysics; andesites; augite; basalts; basins; boninite; chain silicates; clinopyroxene; Deep Sea Drilling Project; diabase; DSDP Site 458; fore-arc basalts; fore-arc basins; Guam; Hahajima Seamount; igneous rocks; inductively coupled plasma methods; IPOD; iron-titanium oxides; laser ablation; laser methods; lava; Leg 60; mantle; Mariana Islands; Micronesia; mid-ocean ridge basalts; nesosilicates; North Pacific; Northwest Pacific; Oceania; olivine; olivine group; orthosilicates; outcrops; Pacific Ocean; phenocrysts; pillow structure; plate tectonics; plutonic rocks; pyroxene group; silicates; slabs; spectroscopy; subduction; submersibles; tholeiitic basalt; volcanic rocks; West Pacific;
.
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