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Volumn 319, Issue 5862, 2008, Pages 451-453

Elasticity of (Mg,Fe)O through the spin transition of iron in the lower mantle

Author keywords

[No Author keywords available]

Indexed keywords

FERROPERICLASE; IRON OXIDE; MAGNESIUM OXIDE; UNCLASSIFIED DRUG;

EID: 38549118869     PISSN: 00368075     EISSN: 10959203     Source Type: Journal    
DOI: 10.1126/science.1149606     Document Type: Article
Times cited : (171)

References (23)
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    • Materials and methods are available as supporting material on Science Online.
    • Materials and methods are available as supporting material on Science Online.
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    • Acoustic velocities and moduli are tabulated in tables S1 and S2. Figure S1 presents the inferred aggregate shear modulus as a function of pressure.
    • Acoustic velocities and moduli are tabulated in tables S1 and S2. Figure S1 presents the inferred aggregate shear modulus as a function of pressure.
  • 22
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    • -3.
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    • J.C.C. acknowledges W. Sturhahn and M. Armstrong for useful discussion. J.M.B. acknowledges support from NSF EAR 0106683. A.F.G. acknowledges support from the U.S. Department of Energy (DOE)/National Nuclear Security Agency through the Carnegie/DOE Allliance Center, NSF, and the W. M. Keck Foundation, and acknowledges V. Struzhkin for useful comments and discussions. S.D.J. acknowledges support from NSF EAR 0721449 and acknowledges J. F. Lin, S. J. Mackwell, and C. A. McCammon for discussions and help with sample synthesis and characterization. We thank two anonymous reviewers for constructive criticism and suggestions. This work was performed under the auspices of the DOE by the University of California, LLNL under contract no. W-7405-Eng-48. The project 06-SI-005 was funded by the Laboratory Directed Research and Development Program at LLNL
    • J.C.C. acknowledges W. Sturhahn and M. Armstrong for useful discussion. J.M.B. acknowledges support from NSF EAR 0106683. A.F.G. acknowledges support from the U.S. Department of Energy (DOE)/National Nuclear Security Agency through the Carnegie/DOE Allliance Center, NSF, and the W. M. Keck Foundation, and acknowledges V. Struzhkin for useful comments and discussions. S.D.J. acknowledges support from NSF EAR 0721449 and acknowledges J. F. Lin, S. J. Mackwell, and C. A. McCammon for discussions and help with sample synthesis and characterization. We thank two anonymous reviewers for constructive criticism and suggestions. This work was performed under the auspices of the DOE by the University of California, LLNL under contract no. W-7405-Eng-48. The project 06-SI-005 was funded by the Laboratory Directed Research and Development Program at LLNL.


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