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High Pressure Research
An International Journal
Volume 26, 2006 - Issue 3
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Original Articles

Equation of state of solids from high-pressure isotherm

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Pages 223-231 | Received 28 Apr 2006, 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 (2)

A. M. Molodets & A. A. Golyshev. (2007) Thermal conductivity of ringwoodite under high compressive and tensile pressures. High Pressure Research 27:3, pages 361-365.
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A. M. Molodets, V. V. Avdonin, A. N. Zhukov, V. V. Kim, A. YU. Osip’yan, N. S. Sidorov, J. M. Shulga & V. E. Fortov. (2007) Electroconductivity and pressure–temperature states of step shocked C60 fullerite. High Pressure Research 27:2, pages 279-290.
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Articles from other publishers (14)

Yin Luo, Shikai Xiang, Jun Li, Jian Wu, Lixin Liu, Jiabo Li, Yunting Xian & Run Wu. (2023) Equation of state of MgO up to 345 GPa and 8500 K. Physical Review B 107:13.
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Dieter StrauchDieter Strauch. 2017. Semiconductors. Semiconductors 9 11 .
E I Kraus & I I Shabalin. (2016) A few-parameter equation of state of the condensed matter. Journal of Physics: Conference Series 774, pages 012009.
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E I Kraus & I I Shabalin. (2015) Calculation of elastic modules behind strong shock wave. Journal of Physics: Conference Series 653, pages 012085.
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Konstantin D. Litasov, Peter I. Dorogokupets, Eiji Ohtani, Yingwei Fei, Anton Shatskiy, Igor S. Sharygin, Pavel N. Gavryushkin, Sergey V. Rashchenko, Yury V. Seryotkin, Yiji Higo, Kenichi Funakoshi, Artem D. Chanyshev & Sergey S. Lobanov. (2013) Thermal equation of state and thermodynamic properties of molybdenum at high pressures. Journal of Applied Physics 113:9.
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T.S. Sokolova, P.I. Dorogokupets & K.D. Litasov. (2013) Self-consistent pressure scales based on the equations of state for ruby, diamond, MgO, B2–NaCl, as well as Au, Pt, and other metals to 4 Mbar and 3000 K. Russian Geology and Geophysics 54:2, pages 181-199.
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A. A. Golyshev, D. V. Shakhray, V. V. Kim, A. M. Molodets & V. E. Fortov. (2011) High-temperature resistivity of shocked liquid sodium at pressures up to 230 GPa. Physical Review B 83:9.
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Peter I. Dorogokupets. (2010) P–V–T equations of state of MgO and thermodynamics. Physics and Chemistry of Minerals 37:9, pages 677-684.
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A. M. Molodets, D. V. Shakhray & A. S. Savinykh. (2010) Quasi-isentropic compression of C60H36 hydrofullerene and the evaluation of its thermodynamic properties at high pressures. Physics of the Solid State 52:1, pages 206-211.
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A. M. Molodets, D. V. Shakhray, A. G. Khrapak & V. E. Fortov. (2009) Metallization of aluminum hydride at high multiple-shock pressures . Physical Review B 79:17.
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A. M. Molodets & A. A. Golyshev. (2009) Thermal conductivity of indium at high pressures and temperatures under shock compression. Physics of the Solid State 51:2, pages 226-229.
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A. M. Molodets, A. A. Golyshev, A. N. Zhukov, V. E. Muradyan, S. A. Pisarev, Yu. M. Shul’ga & V. E. Fortov. (2008) Structural and morphological changes induced by intense shock waves in carbon nanotubes. Nanotechnologies in Russia 3:11-12, pages 697-703.
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A. M. Molodets, A. S. Lobach, A. N. Zhukov, Yu. M. Shulga & V. E. Fortov. (2008) Stability of crystalline structure and molecules of hydrofullerene C60H36 under high shock pressures. Doklady Physics 53:11, pages 562-565.
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A. M. Molodets, D. V. Shakhray, A. A. Golyshev & V. E. Fortov. (2007) Electrophysical and thermodynamic properties of shock compressed incommensurate phase Sc-II. Physical Review B 75:22.
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