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Results 1 to 25 of 11006

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Heat capacity of carbon nanotubesBENEDICT, L. X; LOUIE, S. G; COHEN, M. L et al.Solid state communications. 1996, Vol 100, Num 3, pp 177-180, issn 0038-1098Article

LATTICE SPECIFIC HEAT OF CARBON NANOTUBESSPARAVIGNA, A.Journal of thermal analysis and calorimetry. 2008, Vol 93, Num 3, pp 983-986, issn 1388-6150, 4 p.Article

Heat capacity studies of ThP and UP0.5As0.5 solid solution. Reanalyzing UP dataBLAISE, A; LAGNIER, R; GORDON, J. E et al.Journal of low temperature physics. 1985, Vol 61, Num 5-6, pp 323-335, issn 0022-2291Article

The heat capacity of high-purity dysprosium from 0.5 to 20 K = Chaleur massique du dysprosium de haute pureté de 0,5 à 20 KHILL, R. W; GSCHNEIDNER, K. A. JR.Journal of physics. F. Metal physics. 1988, Vol 18, Num 12, pp 2545-2557, issn 0305-4608Article

Low-temperature heat capacity of magnetic graphite intercalation compoundsSHAYEGAN, M; DRESSELHAUS, M. S; SALAMANCA-RIBA, L et al.Physical review. B, Condensed matter. 1983, Vol 28, Num 8, pp 4799-4809, issn 0163-1829Article

Comparison of the heat transfer characteristics of supercritical pressure water to that of subcritical pressure water in vertically-upward tubesJIANGUO WANG; HUIXIONG LI; SHUIQING YU et al.International journal of multiphase flow. 2011, Vol 37, Num 7, pp 769-776, issn 0301-9322, 8 p.Article

Enhanced Specific Heat of Silica NanofluidSHIN, Donghyun; BANERJEE, Debjyoti.Journal of heat transfer. 2011, Vol 133, Num 2, issn 0022-1481, 024501.1-024501.4Article

Magnetic and phonon contributions to the specific heat of PdNi alloys between 1.8 and 300 K = Contributions magnétiques et des phonons à la chaleur massique des alliages PdNi entre 1,8 et 300 KLORAM, J. W; MIRZA, K. A; CHEN, Z et al.Journal of physics. F. Metal physics. 1986, Vol 16, Num 2, pp 233-255, issn 0305-4608Article

Low-frequency Einstein mode in the heavy-fermion compound UBe13 = Mode de Einstein aux basses fréquences dans le composé à fermions lourds UBe13RENKER, B; GOMPF, F; REICHARDT, W et al.Physical review. B, Condensed matter. 1985, Vol 32, Num 3, pp 1859-1861, issn 0163-1829Article

The specific heat of erbium from 0.4 to 23 K = La chaleur massique de l'erbium entre 0,4 et 23 KHILL, R. W; COSIER, J; HUKIN, D. A et al.Journal of physics. F. Metal physics. 1984, Vol 14, Num 5, pp 1267-1276, issn 0305-4608Article

Low-temperature specific heat of USb and UTeRUDIGIER, H; FIERZ, C; OTT, H. R et al.Solid state communications. 1983, Vol 47, Num 10, pp 803-806, issn 0038-1098Article

The change of some magnetic properties of Cr2O3 in the vicinity of TN for the paramagnetic stateLATACZ, Z; BASTER, M.Journal of alloys and compounds. 2008, Vol 464, Num 1-2, pp 23-27, issn 0925-8388, 5 p.Article

Specific heat and magnetic susceptibility of polyaniline nanotubes: inhomogeneous disorderYUNZE LONG; JIANLIN LUO; JIE XU et al.Journal of physics. Condensed matter (Print). 2004, Vol 16, Num 7, pp 1123-1130, issn 0953-8984, 8 p.Article

Low-temperature specific heats of C24K(H2)x and C24K(D2)xKONDOW, T; MIZUTANI, U.Synthetic metals. 1983, Vol 6, Num 2-3, pp 141-147, issn 0379-6779Article

Pseudogap formation near at the border of an insulator-metal transition in SmSMATSUBAYASHI, Kazuyuki; IMURA, Keiichiro; SUZUKI, Hiroyuki S et al.Journal of the Physical Society of Japan. 2007, Vol 76, Num 3, issn 0031-9015, 033602.1-033602.4Article

Correlation of initial slope of thermoelectric power and electronic specific-heat constant for solid solutions based on Ce and Eu compoundsSAKURAI, Junji; ISIKAWA, Yosikazu.Journal of the Physical Society of Japan. 2005, Vol 74, Num 7, pp 1926-1929, issn 0031-9015, 4 p.Article

Quasparticle spin susceptibility in heavy-fermion superconductors : An NMR study compared with specific heat resultsTOU, Hideki; ISHIDA, Kenji; KITAOKA, Yoshio et al.Journal of the Physical Society of Japan. 2005, Vol 74, Num 4, pp 1245-1254, issn 0031-9015, 10 p.Article

Thermal stability and electronic specific heat of GaNSONG, Y. T; WU, X; WANG, W. J et al.Journal of alloys and compounds. 2004, Vol 370, pp 65-68, issn 0925-8388, 4 p.Article

Ferromagnetism and crystalline electric field effects in cubic UX2Zn20 (X = Co, Rh, Ir)BAUER, E. D; THOMPSON, J. D; SARRAO, J. L et al.Journal of magnetism and magnetic materials. 2007, Vol 310, Num 2, pp 449-451, issn 0304-8853, 3 p., 1Conference Paper

Universal behaviour of the magnetic heat capacity for T→0KÖBLER, U; KAWAKAMI, M; SCHNELLE, W et al.Physica. B, Condensed matter. 2005, Vol 367, Num 1-4, pp 255-266, issn 0921-4526, 12 p.Article

The specific heats of LaAg, GdAg and Gd2O3 from 0.5 to 22 K = Les chaleurs massiques de LaAg, GdAg et Gd2O3 de 0,5 à 22 KHILL, R. W; COSIER, J; HUKIN, D. A et al.Journal of physics. C. Solid state physics. 1983, Vol 16, Num 15, pp 2871-2880, issn 0022-3719Article

LOW TEMPERATURE SPECIFIC HEAT OF MNP; EXPERIMENT AND ANALYSISTAKASE A; YASHIMA H; KASUYA T et al.1979; J. PHYS. SOC. JPN.; ISSN 0031-9015; JPN; DA. 1979; VOL. 47; NO 2; PP. 531-534; BIBL. 5 REF.Article

Magnetic properties and heavy electronic states in the antiferromagnet NpPtGa5AOKI, Dai; HAGA, Yoshinori; HOMMA, Yoshiya et al.Journal of the Physical Society of Japan. 2006, Vol 75, Num 11, issn 0031-9015, 114715.1-114715.7Article

Temperature and concentration dependence of the specific heat of (ErxY1-x)Co2 = Dépendance en température et en concentration de la chaleur spécifique de (Erx Y1-x) Co2PILLMAYR, N; HILSCHER, G; GRATZ, E et al.Journal de physique. Colloques. 1988, Vol 49, Num 8, pp 273-274, issn 0449-1947, 1Conference Paper

Low-temperature specific heat of U3P4. Interpretation of thermodynamic and magnetic properties of U3P4 in a crystal-field modelAMORETTI, G; BLAISE, A; HALL, R. O. A et al.Journal of magnetism and magnetic materials. 1986, Vol 53, Num 4, pp 299-308, issn 0304-8853Article

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