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Results 1 to 25 of 8561

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Heat capacity and Grüneisen function of negative thermal expansion compound HfW2O8YAMAMURA, Yasuhisa; NAKAJIM, Noriyuki; TSUJI, Toshihide et al.Solid state communications. 2002, Vol 121, Num 4, pp 213-217, issn 0038-1098Article

Simple refinements of Brillouin zone integrationBRUNO, J. A. O; ALLAN, N. L; BARRON, T. H. K et al.Journal of physics. Condensed matter (Print). 2000, Vol 12, Num 5, pp 549-558, issn 0953-8984Article

Heat capacity and thermodynamic properties of α- and β-Zn(ClO4)2GAVRICHEV, K. S; SHARPATAYA, G. A; GORBUNOV, V. E et al.Inorganic materials. 1999, Vol 35, Num 10, pp 1075-1092, issn 0020-1685Article

Molecular dynamics study on thermal properties of UO2YAMADA, K; YAMANAKA, S; KATSURA, M et al.Technology reports of the Osaka University. 1998, Vol 48, Num 231937, pp 167-173, issn 0030-6177Article

Calorimetric studies of tetrakis(alkylthio)tetrathiafulvalene, TTCn-TTF (n = 3,8)TANAKA, T; ATAKE, T; SHI, Z et al.The Journal of physics and chemistry of solids. 1997, Vol 58, Num 2, pp 295-300, issn 0022-3697Article

Thermal properties of a new organometallic nonlinear optical material, triallylthiourea mercury bromide (ATMB)HOU, W. B; YANG, Z. H; JIANG, M. H et al.Materials letters (General ed.). 1994, Vol 18, Num 4, pp 207-210, issn 0167-577XArticle

The thermodynamic properties of tetraborides of rare-earth metals in the temperature range of 298-2300 KMURATOV, V. B; BOLGAR, A. S; MELESHEVICH, K. A et al.High temperature. 1993, Vol 31, Num 5, pp 679-682, issn 0018-151XArticle

Thermodynamic properties of graphitelike modifications of boron nitride at temperatures from 300 to 1700 KSOLOZHENKO, V. L.Russian journal of physical chemistry. 1993, Vol 67, Num 8, pp 1418-1420, issn 0036-0244Article

Thermodynamic evaluation of the Bi-Se systemANTIPOV, A. V; RUDNYI, E. B; DOBROKHOTOVA, Zh. V et al.Inorganic materials. 2001, Vol 37, Num 2, pp 126-132, issn 0020-1685Article

Enthalpy increment measurements of SrMoO4(s) and BaMoO4(s)SINGH, Z; DASH, S; PRASAD, R et al.Journal of alloys and compounds. 1998, Vol 279, Num 2, pp 287-294, issn 0925-8388Article

Defect induced changes in the ferroelastic phase of LiKSO4 crystalsABD EL-AZIZ, Y. M; HAMED, A. E; MADI, N. K et al.Radiation effects and defects in solids. 1997, Vol 140, Num 3-4, pp 373-383, issn 1042-0150Article

Thermodynamic investigation of solid and liquid Au-Te alloysANRES, P; BROS, H; COULET, A et al.Physics and chemistry of liquids Print. 1994, Vol 28, Num 1, pp 63-70, issn 0031-9104Article

Heat capacity measurements and XPS studies on uranium―lanthanum mixed oxidesVENKATA KRISHNAN, R; MITTAL, V. K; BABU, R et al.Journal of alloys and compounds. 2011, Vol 509, Num 7, pp 3229-3237, issn 0925-8388, 9 p.Article

Thermal expansion and heat capacity of GaAs and InAsGLAZOV, V. M; PASHINKIN, A. S.Inorganic materials. 2000, Vol 36, Num 3, pp 225-231, issn 0020-1685Article

Entropy of glass, spatial energy fluctuations and the Kauzmann paradoxBAER, S.Journal of non-crystalline solids. 1999, Vol 250-52, pp 586-590, issn 0022-3093, 2Conference Paper

Calorimetric measurements on rare earth pyrohafnates RE2Hf2O7 (Re=La, Eu, Gd)BABU, R; NAGARAJAN, K.Journal of alloys and compounds. 1998, Vol 265, pp 137-139, issn 0925-8388Article

The heat capacity and derived thermodynamic functions of La2Zr2O7 and Ce2Zr2O7 from 4 to 1000 KBOLECH, M; CORDFUNKE, E. H. P; VAN GENDEREN, A. C. G et al.The Journal of physics and chemistry of solids. 1997, Vol 58, Num 3, pp 433-439, issn 0022-3697Article

Heat capacity and thermodynamic properties of Cr2As from 5 to 1000 KWESTRUM, E. F; SIPOWSKA, J; GRØNVOLD, F et al.Thermochimica acta. 1996, Vol 285, Num 1, pp 25-33, issn 0040-6031Conference Paper

Heat capacity and thermodynamic functions of copper orthothioarseniteMULDAGALIEVA, R. A; KUZGIBEKOVA, KH; ISABAEV, S. M et al.High temperature. 1993, Vol 31, Num 6, issn 0018-151X, p. 953Article

Heat capacity of Cu3AsS3 in the range of 3 to 300 KTOLKACHEV, S. M; ZLOKAZOV, V. B; KOBELEV, L. YA et al.Russian journal of physical chemistry. 1993, Vol 67, Num 8, pp 1415-1417, issn 0036-0244Article

Determination of standard entropy of formation of Al11Nd3 by heat capacity measurement from near absolute zero kelvinYAMAMOTO, Hiroaki; MORISHITA, Masao; KUSUMOTO, Minoru et al.Journal of alloys and compounds. 2007, Vol 433, Num 1-2, pp 1-5, issn 0925-8388, 5 p.Article

Measurement of high-temperature specific heats : thermodynamics of alkali metal systemsKOHLI, R.High Temperatures. High Pressures (Print). 1999, Vol 31, Num 1, pp 49-53, issn 0018-1544Conference Paper

Heat capacity and heat content measurements on binary compounds in the Ru-Si, Ru-Ge, and Ru-Sn systemsKUNTZ, J. J; PERRING, L; FESCHOTTE, P et al.Journal of solid state chemistry (Print). 1997, Vol 133, Num 2, pp 439-444, issn 0022-4596Conference Paper

Thermodynamic basis for the inevitability of low-temperature glass properties anomaliesNEMILOV, S. V.Journal of non-crystalline solids. 1996, Vol 196, Num 1-3, pp 352-356, issn 0022-3093Conference Paper

Low-temperature heat capacity of dysprosium-iron garnetMIRIANASHVILI, T. B; VARAZASHVILI, V. S; GAVRICHEV, K. M et al.Russian journal of physical chemistry. 1993, Vol 67, Num 8, pp 1545-1546, issn 0036-0244Article

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