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Specific Heat Capacity of Pure Water at 4.0 MPa between 298.15 and 465.65 KMANYA, Joan J; ANTAL, Michael Jerry; KINOSHITA, Christopher K et al.Industrial & engineering chemistry research. 2011, Vol 50, Num 10, pp 6470-6484, issn 0888-5885, 15 p.Article

Thermal properties of fullerenesCHUNG, M; WANG, K; GOLDEN, A et al.Synthetic metals. 1993, Vol 56, Num 2-3, pp 2985-2990, issn 0379-6779Conference Paper

Chaleur massique isobarique de l'hexane n surchaufféBASHKATOV, N. V; ERMANOV, G. V.Teplofizika vysokih temperatur. 1989, Vol 27, Num 2, pp 392-394, issn 0040-3644, 3 p.Article

Mechanism of the anomalous increase of the specific heat of helium II near the λ pointLU, P; SUEBKA, P.Physical review. B, Condensed matter. 1987, Vol 36, Num 1, pp 760-762, issn 0163-1829Article

Specific heat measurements of TiB2 and 6LiF from 0.5 to 30 KLANG, Brian E; DONALDSON, Marcus H; WOODFIELD, Brian F et al.Journal of nuclear materials. 2005, Vol 347, Num 1-2, pp 125-133, issn 0022-3115, 9 p.Article

Black holes with positive specific heatHAYWARD, G.Classical and quantum gravity (Print). 1989, Vol 6, Num 2, pp L25-L28, issn 0264-9381Article

Universality glass of a Fibonacci Ising modelTRACY, C. A.Journal of statistical physics. 1988, Vol 51, Num 3-4, pp 481-490, issn 0022-4715Article

On the importance of specific heats as regards efficiency increases for highly dilute IC enginesCATON, Jerald A.Energy conversion and management. 2014, Vol 79, pp 146-160, issn 0196-8904, 15 p.Article

Specific heat of the dissipative two-state systemGÖRLICH, R; WEISS, U.Physical review. B, Condensed matter. 1988, Vol 38, Num 8, pp 5245-5259, issn 0163-1829Article

Upper bound on the specific-heat jump: application to the high-Tc oxidesBLEZIUS, J; CARBOTTE, J. P.Physical review. B, Condensed matter. 1987, Vol 36, Num 7, pp 3622-3626, issn 0163-1829Article

Phonon dynamics of plutonium chalcogenides and pnictidesARYA, Balwant S; AYNYAS, Mahendra; SANYAL, S. P et al.Journal of nuclear materials. 2009, Vol 393, Num 3, pp 381-386, issn 0022-3115, 6 p.Article

The velocity of sound in liquid helium near the lambda pointMAZA, J; MIGUELEZ, F; VEIRA, A et al.Journal of physics. C. Solid state physics. 1988, Vol 21, Num 4, pp L75-L81, issn 0022-3719Article

Calculating yearly heat consumption using the specific heat demand coefficientZSEBIK, Albin; BENYO, Imre.Energy engineering. 2001, Vol 98, Num 6, pp 50-57, issn 0199-8595Article

A calorimetric study of the deuteration effect on the phase behavior in Rb3H(SeO4)2 and Rb3D(SeO4)2. II: Heat capacities at very low temperaturesFUKAI, M; INABA, A; MATSUO, T et al.Solid state communications. 1993, Vol 87, Num 10, pp 939-943, issn 0038-1098Article

On the thermal expansion coefficient and specific heat at constant strain for finite plastic deformationBERT, C. W; HUANG, S.Journal of applied mechanics. 1993, Vol 60, Num 2, pp 449-455, issn 0021-8936Article

High-precision adiabatic calorimetry and the specific heat of cyclopentane at low temperatureJAKOBI, R; GMELIN, E; RIPKA, K et al.Journal of thermal analysis. 1993, Vol 40, Num 3, pp 871-876, issn 0368-4466Conference Paper

Dynamic plane-source technique for the study of the thermal transport properties of solidsKARAWACKI, E; SULEIMAN, B. M.High Temperatures. High Pressures (Print). 1991, Vol 23, Num 2, pp 215-223, issn 0018-1544Conference Paper

Continuous-cooling method of specific heat measurement in the temperature range 100-300 KRAJESWARI, M; RAMASEHA, S. K; RAYCHAUDHURI, A. K et al.Journal of physics. E. Scientific instruments. 1988, Vol 21, Num 11, pp 1017-1022, issn 0022-3735Article

The magnetic field dependence of the specific heat in quantum spin chains with axial symmetryPAPNICOLAOU, N; SPATHIS, P.Journal of physics. C. Solid state physics. 1987, Vol 20, Num 29, pp L783-L787, issn 0022-3719Article

Specific heat anomalies of small quantum systems subjected to finite bathsHASEGAWA, Hideo.Journal of mathematical physics. 2011, Vol 52, Num 12, issn 0022-2488, 123301.1-123301.18Article

Determinaciones termogravimétricas y de calor específico de un concentrado comercial de ulexita, entre temperatura ambiente y 1.000 °C = Thermogravimetric and specific heat determinations of a commercial preconcentrated sample of ulexite, between room temperature and 1,000°CFLORES, H. R; VALDEZ, S. K.Revista de metalurgia (Madrid). 2006, Vol 42, Num 6, pp 404-408, issn 0034-8570, 5 p.Article

Experimental evidence of considerable stability increase in superconducting windings with extremely high specific heat substancesALEKSEEV, P. A; BOEV, A. I; KEILIN, V. E et al.Cryogenics (Guildford). 2004, Vol 44, Num 11, pp 763-766, issn 0011-2275, 4 p.Article

Fluid random surfaces with extrinsic curvature. IIANAGNOSTOPOULOS, K; BOWICK, M; CODDINGTON, P et al.Physics letters. Section B. 1993, Vol 317, Num 1-2, pp 102-106, issn 0370-2693Article

Specific heat of highly decorated 2D ising models on a triangular lattice net with holesPLECHKO, V. N; SOBOLEV, I. K.Physics letters. A. 1991, Vol 157, Num 6-7, pp 335-342, issn 0375-9601Article

Anomalies des propriétés thermiques du silicium contenant l'impureté nickelIGAMBERDYEV, KH. T; MAMADALIMOV, A. T; MAKHMUDOV, K et al.Fizika tverdogo tela. 1988, Vol 30, Num 4, pp 1205-1207, issn 0367-3294Article

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