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Molecular Physics
An International Journal at the Interface Between Chemistry and Physics
Volume 38, 1979 - Issue 2
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Original Articles

Thermal conductivity and heat capacity of solid phases of benzene under pressure

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Pages 377-385 | Received 13 Nov 1978, Published online: 23 Aug 2006

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Read on this site (7)

O. Tari & H. Yurtseven. (2018) Calculation of the CP-CV as a function of temperature close to the melting point in benzene. Physics and Chemistry of Liquids 56:5, pages 660-673.
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RussellG. Ross. (1991) Thermal Conductivity and Disorder in Nonmetallic Materials. Physics and Chemistry of Liquids 23:4, pages 189-210.
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RussellG. Ross & Per Andersson. (1981) Thermal Conductivity, Heat Capacity and Phase Diagram of Tetrahydrofuran Under Pressure. Molecular Crystals and Liquid Crystals 78:1, pages 35-40.
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R.G. Ross & P. Andersson. (1981) Thermal Conductivity, Heat Capacity and Phase Diagrams of the Trichloroethanes Under Pressure. Molecular Crystals and Liquid Crystals 69:1-2, pages 145-156.
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P. Andersson & R.G. Ross. (1980) Thermal resistivity, heat capacity and phase diagram of CBr4 under pressure. Molecular Physics 39:6, pages 1359-1368.
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R.G. Ross, P. Andersson & G. Bäckström. (1979) Thermal conductivity and heat capacity of benzene, naphthalene and anthracene under pressure. Molecular Physics 38:2, pages 527-533.
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Articles from other publishers (37)

Hamit YURTSEVEN & Hilal ÖZDEMİR. (2022) Temperature Dependence of the Entropy and the Heat Capacity Calculated from the Raman Frequency Shifts for Solid Benzene, Naphthalene and Anthracene. International Journal of Thermodynamics 25:3, pages 55-62.
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John S. Tse & Dennis D. Klug. 2022. Clathrate Hydrates. Clathrate Hydrates 717 747 .
Tomas Kamencek & Egbert Zojer. (2022) Discovering structure–property relationships for the phonon band structures of hydrocarbon-based organic semiconductor crystals: the instructive case of acenes. Journal of Materials Chemistry C 10:7, pages 2532-2543.
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Paolo Stringari, Marco Campestrini & Salem Hoceini. (2021) Gibbs Free Energy Equation of State for Phase I of Solid Benzene from 15 to 488 K and up to 1165 MPa. Journal of Chemical & Engineering Data 66:12, pages 4603-4617.
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O I Pursky, T V Dubovyk, V O Babenko, V F Gamaliy, R A Rasulov & R P Romanenko. (2021) Computational method for studying the thermal conductivity of molecular crystals in the course of condensed matter physics. Journal of Physics: Conference Series 1840:1, pages 012015.
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Hilal Ozdemir & Hamit Yurtseven. (2019) Calculation of the heat capacity Cp from the temperature-induced and pressure-induced Raman frequency shifts for solid benzene, naphthalene and anthracene. Optik 178, pages 774-784.
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H. Yurtseven & H. Özdemir. (2017) Raman frequencies calculated as functions of temperature and pressure using volume data for solid phase I of benzene. Optik 144, pages 224-231.
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O. Tari & H. Yurtseven. (2016) Varıatıon of the molar volume wıth the temperature and the Pıppard relatıons near the meltıng poınt ın benzene. Journal of Molecular Liquids 220, pages 883-887.
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H. Yurtseven & H. ?zdemir. (2015) Calculation of the specific heat using the Raman frequency shifts for the solid I?II transition in benzene. Journal of Molecular Structure 1090, pages 53-57.
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H. Özdemir & H. Yurtseven. (2015) Pressure dependence of the Raman frequencies for the modes I, II and III at constant temperatures in phase II of benzene. Journal of Molecular Structure 1080, pages 117-121.
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Ozlem Tari & Hamit Yurtseven. (2013) Raman Frequencies Calculated at Various Pressures in Phase I of Benzene. Journal of the Korean Chemical Society 57:2, pages 204-209.
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H. Yurtseven, B. Ra?ito?lu & E. Kilit. (2011) Vibrational frequencies studied as a function of pressure in phase II of solid benzene. Journal of Molecular Structure 993:1-3, pages 428-430.
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Hanjie Lee & Arne J. Pearlstein. (2000) Simulation of radial solute segregation in vertical Bridgman growth of pyridine-doped benzene, a surrogate for binary organic nonlinear optical materials. Journal of Crystal Growth 218:2-4, pages 334-352.
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Hanjie Lee & Arne J. Pearlstein. (2000) Simulation of vertical Bridgman growth of benzene, a material with anisotropic solid-phase thermal conductivity. Journal of Crystal Growth 209:4, pages 934-952.
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V. G. Manzhelii & V. A. Konstantinov. 1994. Die Kunst of Phonons. Die Kunst of Phonons 321 332 .
R. J. Gummow & I. Sigalas. (1988) The thermal conductivity of talc as a function of pressure and temperature. International Journal of Thermophysics 9:6, pages 1111-1120.
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B. Håkansson, P. Andersson & G. Bäckström. (1988) Improved hot-wire procedure for thermophysical measurements under pressure. Review of Scientific Instruments 59:10, pages 2269-2275.
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R. J. Gummow & I. Sigalas. (1987) Temperature and pressure effects on the thermal conductivity of TlCl and TlBr. International Journal of Thermophysics 8:5, pages 607-620.
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P. G. Knibbe & J. D. Raal. (1987) Simultaneous measurement of the thermal conductivity and thermal diffusivity of liquids. International Journal of Thermophysics 8:2, pages 181-191.
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J. E. S. Venart, R. C. Prasad & G. Wang. (1987) Knudsen-effect errors with transient line-source measurement in fluids. International Journal of Thermophysics 8:1, pages 39-46.
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B. H?kansson & P. Andersson. (1986) Thermal conductivity and heat capacity of solid NaCl and NaI under pressure. Journal of Physics and Chemistry of Solids 47:4, pages 355-362.
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J. J. van Loef. (1986) Thermal transport behavior of van der Waals solids and liquids in the neighborhood of the solid-liquid phase transition. International Journal of Thermophysics 7:1, pages 125-137.
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B. H�kansson & R. G. Ross. (1985) Thermal conductivity of solid NaF under high pressure. International Journal of Thermophysics 6:4, pages 353-365.
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I. Sigalas, B. H�kanson & P. Andersson. (1985) Thermal conductivity and heat capacity of solid nabr under pressure. International Journal of Thermophysics 6:2, pages 177-190.
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R G Ross, P Andersson, B Sundqvist & G Backstrom. (1984) Thermal conductivity of solids and liquids under pressure. Reports on Progress in Physics 47:10, pages 1347-1402.
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H. Forsman & P. Andersson. (2010) Effects of Temperature and Pressure on the Thermal Conductivity of Solid n‐Undecane. Berichte der Bunsengesellschaft für physikalische Chemie 87:6, pages 490-495.
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A Fransson & R G Ross. (1983) Thermal conductivity, heat capacity and phase stability of solid sodium chlorate (NaClO 3 ) under pressure . Journal of Physics C: Solid State Physics 16:15, pages 2861-2869.
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P Andersson & R G Ross. (1983) Effect of guest molecule size on the thermal conductivity and heat capacity of clathrate hydrates. Journal of Physics C: Solid State Physics 16:8, pages 1423-1432.
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Franz Xaver EderFranz Xaver Eder. 1983. Arbeitsmethoden der Thermodynamik. Arbeitsmethoden der Thermodynamik 119 395 .
P. Andersson, R. G. Ross & G. Bäckström. 1983. Thermal Conductivity 17. Thermal Conductivity 17 527 536 .
D Gerlich & P Andersson. (1982) Temperature and pressure effects on the thermal conductivity and heat capacity of CsCl, CsBr and CsI. Journal of Physics C: Solid State Physics 15:25, pages 5211-5222.
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H. Forsman, P. Andersson & G. Bäckström. (1982) Thermal conductivity and heat capacity of n-heptane, n- and iso-propyl-alcohol at high pressure. Physica B+C 114:3, pages 287-294.
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Glen A. Slack & Per Andersson. (1982) Pressure and temperature effects on the thermal conductivity of CuCl. Physical Review B 26:4, pages 1873-1884.
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R. G. Ross & P. Andersson. (1981) Thermal conductivity and heat capacity of solid silver bromide (AgBr) under pressure. International Journal of Thermophysics 2:4, pages 331-340.
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R. G. Ross, P. Andersson & G. B�ckstr�m. (1981) Thermal conductivity and heat capacity of solid AgCl under pressure. International Journal of Thermophysics 2:3, pages 289-300.
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R. G. Ross, P. Andersson & G. Bäckström. (1981) Unusual PT dependence of thermal conductivity for a clathrate hydrate. Nature 290:5804, pages 322-323.
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P Andersson, R G Ross & G Backstrom. (1980) Thermal resistivity of ice Ih near the melting point. Journal of Physics C: Solid State Physics 13:4, pages L73-L76.
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