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Dietary minerals / Chemical elements / Reducing agents / Wüstite / Silicon carbide / Iron / Carbon / Silicon / Tungsten carbide / Chemistry / Superhard materials / Carbides


Metal–silicate partitioning of tungsten at high pressure and temperature: Implications for equilibrium core formation in Earth
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Document Date: 2009-05-11 10:03:25


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City

Palisades / Washington DC / Bristol / /

Company

Ni Co / Hess / Ni and Co / Elsevier B.V. / /

Country

United States / United Kingdom / /

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Facility

National Museum of Natural History / United Kingdom Lamont-Doherty Earth Observatory / University of Bristol / /

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likely involved metal-silicate equilibration / liquid metal dendrites / style devices / metal / metal phases / experimental systems / liquid metal alloy / similar systems / metal activity corrections / Recent continuous accretion models involving multi-stage metal-silicate equilibration / steady-state molten-metal/liquid-silicate partition coefficient / silicate solution / iron metal / METAL acts / metal/silicate partitioning data / free energy / liquid metal compositions / metal/liquid metal systems / Gravitational potential energy release / metal composition / metal phase / chemical affinity / experimental products / liquid metal / metal analysis / metal/liquid metal partitioning / valence network / metal alloy / metal powder / alloy metal / run products / carbon-bearing systems / metal compositions / metal alloys / metal solution shift / experimental run products / experiments liquid metal / metal carbon content / metal spheres / metal carbon contents / metal capsules / Metal phase equilibria / /

Organization

Columbia University / Department of Mineral Sciences / University of Bristol / USA Department of Earth Sciences / Smithsonian Institution / Department of Earth and Environmental Sciences / /

Person

David Walker / Fe / Jana / Thibault / Michael J. Walter / /

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Position

Editor / Queen / CaO / Rt / representative / Corresponding author / /

Product

Latte W10 Portable Audio Device / Run# SC Capsule / MgO capsule / Fe capsules / /

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New York / /

PublishedMedium

Natural History / /

Technology

X-ray / polymerization / ATM / /

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