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Heat capacities at 298.15 K of the extended [CnC1im][Ntf2] ionic liquid seriesROCHA, Marisa A. A; BASTOS, Margarida; COUTINHO, Joao A. P et al.Journal of chemical thermodynamics. 2012, Vol 53, pp 140-143, issn 0021-9614, 4 p.Article

Standard molar volumes and heat capacities of aqueous solutions of sodium trifluoromethanesulfonate at temperatures up to 573 K and pressures to 28 MPaPOURTIER, Emilie; BALLERAT-BUSSEROLLES, Karine; MAJER, Vladimir et al.Journal of chemical thermodynamics. 2013, Vol 57, pp 416-429, issn 0021-9614, 14 p.Article

Molar heat capacities of choline chloride-based deep eutectic solvents and their binary mixtures with waterLERON, Rhoda B; LI, Meng-Hui.Thermochimica acta. 2012, Vol 530, pp 52-57, issn 0040-6031, 6 p.Article

Evidence for low-temperature isotopic ordering in methyl-monodeuterated lithium acetate dihydrateSCHRÖDER, F; WINKLER, B; BAUER, J. D et al.Journal of chemical thermodynamics. 2012, Vol 54, pp 373-376, issn 0021-9614, 4 p.Article

The heat capacity measurements of CoSb3-based Skutterudite compoundsYUBI ZHANG; CHANGRONG LI; GUIYING XU et al.International journal of materials research. 2010, Vol 101, Num 6, pp 808-811, issn 1862-5282, 4 p.Article

Constant-volume heat capacity at glass transitionTANG, M. B; WANG, W. H; XIA, L et al.Journal of alloys and compounds. 2013, Vol 577, pp 299-302, issn 0925-8388, 4 p.Article

Estimation of gas-phase heat capacities for hydrofluoroethers with two carbon atomsBLOWERS, Paul; TETRAULT, Kyle Franklin; TRUJILLO-MOREHEAD, Yirla et al.Industrial & engineering chemistry research. 2007, Vol 46, Num 20, pp 6600-6604, issn 0888-5885, 5 p.Article

Propriétés thermodynamiques de la phase α de KGd(MoO4)2 dans l'intervalle de 5-313 K et différence des capacités calorifiques des phases α et β dues à la cristallographieFROLOVA, G. I; KOZEEVA, L. P; PAUKOV, I. E et al.Žurnal fizičeskoj himii. 1983, Vol 57, Num 9, pp 2150-2154, issn 0044-4537Article

Thermal testing and numerical simulation of gypsum wallboards incorporated with different PCMs contentBORREGUERO, Ana M; LUZ SANCHEZ, M; VALVERDE, José Luis et al.Applied energy. 2011, Vol 88, Num 3, pp 930-937, issn 0306-2619, 8 p.Article

Chemistry and structural chemistry of phosphides and polyphosphides. XXXII: Heat capacity measurements of LiP15 and KP15SANTANDREA, R; GMELIN, E; SANTANDREA, C et al.Thermochimica acta. 1983, Vol 67, Num 2-3, pp 263-269, issn 0040-6031Article

Measurement of the molar heat capacities of MoO2 and MoO3 from 350 and 950 KINABA, H; MIYAHARA, K; NAITO, K et al.Journal of chemical thermodynamics. 1984, Vol 16, Num 7, pp 643-651, issn 0021-9614Article

A comprehensive study of the heat capacity of CsF from T = 5 K to T=1400 KBENES, O; KONINGS, R. J. M; SEDMIDUBSKY, D et al.Journal of chemical thermodynamics. 2013, Vol 57, pp 92-100, issn 0021-9614, 9 p.Article

Thermophysical properties of intermetallic Mn3MC perovskites. I: Heat capacity of manganese gallium carbide Mn3GacGARCIA, J; BARTOLOME, J; GONZALEZ, D et al.Journal of chemical thermodynamics. 1983, Vol 15, Num 11, pp 1059-1069, issn 0021-9614Article

Parametric space distribution effects of wall heat capacity and thermal resistance on the dynamic thermal behavior of walls and structuresTSILINGIRIS, P. T.Energy and buildings. 2006, Vol 38, Num 10, pp 1200-1211, issn 0378-7788, 12 p.Article

Apparent heat capacity measurements and thermodynamic functions of D(―)-fructose by standard and temperature-modulated calorimetryMAGON, A; PYDA, M.Journal of chemical thermodynamics. 2013, Vol 56, pp 67-82, issn 0021-9614, 16 p.Article

Heat capacities and excess enthalpies of the (N-hexylisoquinolinium thiocyanate ionic liquid + water) binary systemsKROLIKOWSKA, Marta; PADUSZYNSKI, Kamil; HOFMAN, Tadeusz et al.Journal of chemical thermodynamics. 2012, Vol 55, pp 144-150, issn 0021-9614, 7 p.Article

Thermodynamic properties of water confined on the surface of PdO nanoparticlesSPENCER, Elinor C; PARKER, Stewart F; ROSS, Nancy L et al.Journal of chemical thermodynamics. 2012, Vol 51, pp 103-106, issn 0021-9614, 4 p.Article

A calorimetric and thermodynamic investigation of potassium uranyl tungstate K2[(UO2)(W2O8)]LELET, Maxim I; OGURTSOVA, Olga V; SULEIMANOV, Evgeny V et al.Journal of chemical thermodynamics. 2013, Vol 57, pp 430-435, issn 0021-9614, 6 p.Article

P, p, T and heat capacity measurements of (α-pinene + β-pinene) mixtures over the temperature range 283.15 K to 358.15 K and pressures up to 40 MPa: Experiments and modellingLANGA, Elisa; PALAVRA, Antonio M. F; LOURENCO, Maria J. V et al.Journal of chemical thermodynamics. 2013, Vol 57, pp 493-499, issn 0021-9614, 7 p.Article

Molar heat capacity of several aqueous solutions of n-[tris(hydroxymethyl)methyl-3-amino]propanesulfonic acid (TAPS) + glycolLU, Yu-Chyi; CAPARANGA, Alvin R; LERON, Rhoda B et al.Thermochimica acta. 2012, Vol 540, pp 69-73, issn 0040-6031, 5 p.Article

A simple correlation for prediction of heat capacities of ionic liquidsFARAHANI, Nasrin; GHARAGHEIZI, Farhad; ALIREZA MIRKHANI, Seyyed et al.Fluid phase equilibria. 2013, Vol 337, pp 73-82, issn 0378-3812, 10 p.Article

Heat capacity of several mixed-solvent desiccants containing glycol + water + MgCl2LU, Yu-Chyi; CAPARANGA, Alvin R; LI, Meng-Hui et al.Thermochimica acta. 2012, Vol 536, pp 24-29, issn 0040-6031, 6 p.Article

Estimation of heat capacity of boiling of organic compoundsSANGHVI, Ritesh; YALKOWSKY, Samuel H.Industrial & engineering chemistry research. 2006, Vol 45, Num 1, pp 451-453, issn 0888-5885, 3 p.Article

Thermodynamic properties of trans-azobenzene and trans-stilbeneVAN MILTENBURG, J. C; BOUWSTRA, J. A.Journal of chemical thermodynamics. 1984, Vol 16, Num 1, pp 61-65, issn 0021-9614Article

Capacités calorifiques spécifiques et capacités calorifiques spécifiques partielles des solutions solides de nitrate de potassium dans le nitrate d'ammoniumSORINA, G. A; KOZLOVSKAYA, G. M; TSEKHANSKAYA, YU. V et al.Žurnal fizičeskoj himii. 1984, Vol 58, Num 4, pp 972-974, issn 0044-4537Article

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