New PDF release: Back-Arc Spreading Systems: Geological, Biological,

By David M. Christie, Charles R. Fisher, Sang-Mook Lee, Sharon Givens

ISBN-10: 0875904319

ISBN-13: 9780875904313

ISBN-10: 1118666186

ISBN-13: 9781118666180

Published by means of the yankee Geophysical Union as a part of the Geophysical Monograph Series.

New ocean crust is regularly created the place tectonic plates diverge. a particular kind of oceanic crust is shaped via back-arc spreading platforms that parallel oceanic island arcs at the part clear of the subducting plate. Volatile-rich and spatially variable, back-arc spreading structures are a usual laboratory for multi-disciplinary reports of seafloor production, the circulate of magma from the deep earth, and the hydrothermal ecosystems that this circulation sustains.

Derived from the celebrated Ridge 2000 InterRidge Theoretical Institute held in 2004, Back-Arc Spreading structures: Geological, organic, Chemical, and actual Interactions stories the country of the technology, with opt for case studies.

Experienced researchers in, and scholars of, marine geology, organic oceanography, marine geochemistry, volcanology, petrology, and geo- and paleomagnetism will locate this quantity an important source now and for the close to future.

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Additional resources for Back-Arc Spreading Systems: Geological, Biological, Chemical, and Physical Interactions

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Guivel (2001), Newly identified segments of the Pacific-Australia plate boundary along the North Fiji transform zone, Earth Planet. Sci. , 193, 347–358. Phipps Morgan, J. (1997), The generation of a compositional lithosphere by mid-ocean ridge melting and its effect on subsequent off-axis hotspot upwelling and melting, Earth Planet. Sci. , 146, 213–232. , and D. W. Forsyth (1988), Three-dimensional flow and temperature perturbations due to a transform offset: Effects on oceanic crustal and upper mantle structure, J.

Scott, D. , and D. J. Stevenson (1989), A self-consistent model of melting, magma migration and buoyancy-driven circulation beneath mid-ocean ridges, J. Geophys. Res, 94, 2973–2988. Sinton, J. , and P. Fryer (1987), Mariana Trough lavas from 18°N: Implications for the origin of backarc basin basalts, J. Geophys. Res, 92, 12782–12802. 30 BACK-ARC CRUSTAL ACCRETION Sisson, T. , and S. Bronto (1998), Evidence for pressure-release melting beneath magmatic arcs from basalt at Galunggung, Indonesia, Nature, 391, 883–886.

Whelan, P. , J. B. Gill, E. Kollman, R. A. Duncan, and R. E. Drake (1985), Radiometric dating of magmatic stages in Fiji, in Geology and offshore resources of Pacific island arcs—Tonga region, edited by D. W. Scholl and T. L. Vallier, pp. 415–440, Circum Pacific Council for Energy and Mineral Resources, Houston, TX. , and J. Collier (1993), Morphology of the Valu Fa Spreading Ridge in the Southern Lau Basin, J. Geophys. Res, 98, 11769–11782. , and W. Habler (1993), Morphotectonic characteristics of a propagating spreading system in the northern Lau Basin, J.

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Back-Arc Spreading Systems: Geological, Biological, Chemical, and Physical Interactions by David M. Christie, Charles R. Fisher, Sang-Mook Lee, Sharon Givens


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