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High Pressure Research
An International Journal
Volume 25, 2005 - Issue 3
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Original Articles

Effects of intrinsic anharmonicity in the Mie–Grüneisen equation of state and higher order corrections

Pages 187-203 | Received 23 May 2005, Published online: 26 Jan 2007

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (5)

Wilfried B. Holzapfel. (2010) Equations of state for Cu, Ag, and Au and problems with shock wave reduced isotherms. High Pressure Research 30:3, pages 372-394.
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Wilfried B. Holzapfel & Malcolm F. Nicol. (2007) Refined equations of state for Cu, Ag, and Au in the sub-TPa region. High Pressure Research 27:4, pages 377-392.
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P. I. Dorogokupets & A. Dewaele. (2007) Equations of state of MgO, Au, Pt, NaCl-B1, and NaCl-B2: Internally consistent high-temperature pressure scales. High Pressure Research 27:4, pages 431-446.
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Agnès Dewaele & Paul Loubeyre. (2007) Pressurizing conditions in helium-pressure-transmitting medium. High Pressure Research 27:4, pages 419-429.
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Wilfried B. Holzapfel. (2006) Equation of state for solids with mean-field anharmonicity. High Pressure Research 26:4, pages 313-317.
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Articles from other publishers (17)

V. V. Prut. (2022) Gruneisen Function of Alkali Metals. Russian Physics Journal 65:2, pages 337-346.
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Nikolai Bagdassarov. 2021. Fundamentals of Rock Physics. Fundamentals of Rock Physics 455 504 .
Peter Schwerdtfeger, Antony Burrows & Odile R. Smits. (2021) The Lennard-Jones Potential Revisited: Analytical Expressions for Vibrational Effects in Cubic and Hexagonal Close-Packed Lattices. The Journal of Physical Chemistry A 125:14, pages 3037-3057.
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François Bottin, Jordan Bieder & Johann Bouchet. (2020) a-TDEP: Temperature Dependent Effective Potential for Abinit – Lattice dynamic properties including anharmonicity. Computer Physics Communications 254, pages 107301.
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Agnès Dewaele. (2019) Equations of State of Simple Solids (Including Pb, NaCl and LiF) Compressed in Helium or Neon in the Mbar Range. Minerals 9:11, pages 684.
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V. V. Prut. (2019) Modeling and Simulation of Gruneisen Parameter for a Shock Wave. Russian Physics Journal 62:2, pages 339-345.
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Wilfried B. Holzapfel. (2018) Coherent thermodynamic model for solid, liquid and gas phases of elements and simple compounds in wide ranges of pressure and temperature. Solid State Sciences 80, pages 31-34.
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Dieter StrauchDieter Strauch. 2017. Semiconductors. Semiconductors 9 11 .
Wilfried B. Holzapfel. 2017. Correlations in Condensed Matter under Extreme Conditions. Correlations in Condensed Matter under Extreme Conditions 91 106 .
V. V. Prut. (2016) Modeling of the Equation of State for 0 < ρ/ρ0 < 1010. Russian Physics Journal 59:5, pages 686-693.
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T. Balcerzak, K. Szałowski & M. Jaščur. (2014) A self-consistent thermodynamic model of metallic systems. Application for the description of gold. Journal of Applied Physics 116:4, pages 043508.
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T A Lima, E T Sato, E T Martins, P Homem-de-Mello, A F Lago, M D Coutinho-Neto, F F Ferreira, C Giles, M O C Pires & H Martinho. (2012) Anharmonic transitions in nearly dry l-cysteine I. Journal of Physics: Condensed Matter 24:19, pages 195104.
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P. K. Singh. (2012) Analysis of high derivative thermoelastic properties of MgO. Indian Journal of Physics 86:4, pages 259-265.
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John S. Tse & Wilfried B. Holzapfel. (2008) Equation of state for diamond in wide ranges of pressure and temperature. Journal of Applied Physics 104:4.
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P. I. Dorogokupets. (2007) Equation of state of magnesite for the conditions of the Earth’s lower mantle. Geochemistry International 45:6, pages 561-568.
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Peter I. Dorogokupets & Artem R. Oganov. (2007) Ruby, metals, and as alternative pressure scales: A semiempirical description of shock-wave, ultrasonic, x-ray, and thermochemical data at high temperatures and pressures . Physical Review B 75:2.
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Agnès Dewaele, Paul Loubeyre, Florent Occelli, Mohamed Mezouar, Peter I. Dorogokupets & Marc Torrent. (2006) Quasihydrostatic Equation of State of Iron above 2 Mbar. Physical Review Letters 97:21.
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