GEOA/B: Geoscience of Iron and Iron Compounds
FOCUS · Y05 · ID: 3362551
Presentations
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Phase Transformations of Iron-Sulfur Alloys Under Extreme Conditions of Earth and Super-Earths
ORAL
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Presenters
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Azat Tipeev
University of South Florida
Authors
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Azat Tipeev
University of South Florida
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Joseph M Gonzalez
University of South Florida
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Sally June Tracy
Carnegie Inst of Washington
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Ian Szumila
Carnegie Inst of Washington
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Sibo Chen
Arizona State University
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S.-H. Dan Shim
Arizona State University
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Ivan Oleynik
University of South Florida
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The structure and density of iron and iron-nickel alloys at Super-Earth core conditions
ORAL
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Presenters
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Federica Coppari
Lawrence Livermore National Laboratory
Authors
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Federica Coppari
Lawrence Livermore National Laboratory
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Raymond F Smith
Lawrence Livermore National Laboratory
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Samantha M Clarke
Lawrence Livermore Natl Lab, Lawrence Livermore National Laboratory
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Marius Millot
Lawrence Livermore National Laboratory
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Amy E Jenei
Lawrence Livermore National Laboratory
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Saransh Soderlind
Lawrence Livermore National Laboratory
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Jon H Eggert
Lawrence Livermore National Laboratory
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Thomas S Duffy
Princeton University
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Probing the Fe<sub>3</sub>C Phase Diagram at Conditions Relevant to Planetary Cores with Dynamic Compression Experiments
ORAL
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Presenters
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Ian Szumila
Carnegie Inst of Washington
Authors
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Ian Szumila
Carnegie Inst of Washington
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Donghoon Kim
Carnegie Institution for Science
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Richard Gordon Kraus
University of Nevada, Reno
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Raymond F Smith
Lawrence Livermore National Laboratory
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Federica Coppari
Lawrence Livermore National Laboratory
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Sota Takagi
Carnegie Inst of Washington
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Marius Millot
Lawrence Livermore National Laboratory
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Ivan Oleynik
University of South Florida
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Sally June Tracy
Carnegie Inst of Washington
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Recent high-pressure experiments that shed light on planetary cores
ORAL · Invited
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Publication: "Core Formation and Geophysical Properties of Mars." M. C. Brennan, R. A. Fischer, J. C. Irving (2020). Earth and Planetary Science Letters 530, 115923.<br>"High-Pressure Deformation of Iron–Nickel–Silicon Alloys and Implications for Earth's Inner Core." M.C. Brennan, R. A. Fischer, S. Couper., L. Miyagi, D. Antonangeli, G. Morard (2021). Journal of Geophysical Research: Solid Earth 126, e2020JB021077.<br>"Timing of Martian Core Formation from Models of Hf–W Evolution Coupled with N-body Simulations." M. C. Brennan, R. A. Fischer, F. Nimmo, D. P. O'Brien (2022) Geochimica et Cosmochimica Acta 316, 295–308.
Presenters
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Matthew C Brennan
Los Alamos National Laboratory (LANL)
Authors
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Matthew C Brennan
Los Alamos National Laboratory (LANL)
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