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Journal of Thermal Analysis and Calorimetry, ISSN 1388-6150, 01/2019, Volume 135, Issue 2, pp. 1335 - 1349
Journal Article
The Journal of Chemical Thermodynamics, ISSN 0021-9614, 01/2016, Volume 92, pp. 60 - 65
Experimental and fitted molar heat capacities of β-d-(-)-arabinose from T=(1.9 to 300)K. [Display omitted] •Heat capacity was measured using a PPMS over the range... 
Standard thermodynamic functions | Physical Property Measurement System | Low-temperature heat capacity | β-d-(-)-arabinose | SACCHARIDES | T=298.15 K | VOLUMES | CHEMISTRY, PHYSICAL | COPPER | beta-D-(-)-arabinose | CALORIMETER | THERMODYNAMICS | ARABINOSE | GLUCOSE | WATER
Journal Article
Journal of Nuclear Materials, ISSN 0022-3115, 10/2015, Volume 465, pp. 653 - 656
...) was studied as a possible interaction product of the coolant and mixed oxide fuel. The heat capacity of Bi2UO6 were measured and presented here for the first time... 
LBE cooled fast reactors | Heat capacity | Entropy | Bismuth uranate | NUCLEAR SCIENCE & TECHNOLOGY | MATERIALS SCIENCE, MULTIDISCIPLINARY | MINING & MINERAL PROCESSING | SAMPLES
Journal Article
Journal of the American Ceramic Society, ISSN 0002-7820, 2014, Volume 97, Issue 5, pp. 1559 - 1565
... approximated, thereby limiting the accuracy of such models. In this study, samples of NiFe2O4 were synthesized to provide the thermal diffusivity, specific heat capacity, and thermal expansion data from room temperature to 1300 K... 
AUGMENTED-WAVE METHOD | 1300 DEGREES C | CRUD DEPOSITS | HIGH-TEMPERATURE | PAPER OXYGEN CONTENT | TOTAL-ENERGY CALCULATIONS | DENSITY-FUNCTIONAL THEORY | QUASI-RANDOM STRUCTURES | TRANSITION-METALS | MATERIALS SCIENCE, CERAMICS | ELECTRONIC-STRUCTURE | Nickel | Iron compounds | Capacity | Analysis | Thermal expansion | Specific heat | Thermal conductivity | Mathematical models | Nuclear reactors | Deposition | Heat transfer | Curie temperature
Journal Article
The Journal of Chemical Thermodynamics, ISSN 0021-9614, 12/2018, Volume 127, pp. 80 - 85
•The heat capacity of Bi12.5Er1.5CoO22.3 was measured (193–547 K).•The polynomials equations for heat capacity were presented... 
PHASES | THERMODYNAMIC PROPERTIES | THERMODYNAMICS | STABILITY | CHEMISTRY, PHYSICAL | LANTHANIDE | BI2O3 | ELECTROLYTES | ION CONDUCTIVITY | Thermodynamics
Journal Article
Journal of Molecular Liquids, ISSN 0167-7322, 09/2018, Volume 266, pp. 781 - 788
Journal Article
Fluid Phase Equilibria, ISSN 0378-3812, 10/2013, Volume 356, pp. 1 - 10
•Alkanediol+water density was obtained in the interval (283.15–313.15)K.•Isobaric molar heat capacity was also measured in the same conditions... 
Excess heat capacity | Water | Alkanediol | Excess volume | Water utilities
Journal Article
The Journal of Chemical Thermodynamics, ISSN 0021-9614, 08/2017, Volume 111, pp. 142 - 148
....•Cp,mE predicted with COSMO-RS showed acceptable deviations from experimental data. Experimental isobaric molar heat capacities at atmospheric pressure have been determined every 10K for the mixture {p-cymene (1)+ethanol (2... 
COSMO-RS | Atmospheric pressure | Molar heat capacity | Density | (p-cymene + ethanol) mixture | THERMODYNAMIC PROPERTIES | BENZENE | VOLUMES | TOLUENE | CHEMISTRY, PHYSICAL | (p-cymene plus ethanol) mixture | IONIC LIQUID | ALCOHOL-HYDROCARBON SYSTEMS | THERMODYNAMICS | BINARY-MIXTURES | DENSITIES | EXCESS-ENTHALPIES | PARA-XYLENE | Alcohol | Alcohol, Denatured
Journal Article
Thermochimica acta, ISSN 0040-6031, 2019, Volume 674, Issue C, pp. 36 - 43
[Display omitted] •The heat capacities (cp’s) of indapamide (IND) are reported from 1.84 to 523.15 K.•The cp’s of IND were fitted to Debye and Einstein functions... 
Equilibrium parameters of transition phases | Low-temperature heat capacity | Thermodynamic function of enthalpy | Calorimetry | Indapamide | Crystalline and amorphous state | CRYSTALLIZATION | CHEMISTRY, ANALYTICAL | MOLECULAR-DYNAMICS | CHEMISTRY, PHYSICAL | STATE | AMORPHOUS SOLIDS | FORMS | THERMODYNAMICS | TEMPERATURE | DRUGS | SOLUBILITY ADVANTAGE | PHYSICAL STABILITY | STANDARD | Thermodynamics | Chemistry
Journal Article
Nature communications, ISSN 2041-1723, 2018, Volume 9, Issue 1, pp. 1 - 7
Journal Article
Journal of alloys and compounds, ISSN 0925-8388, 2017, Volume 717, pp. 183 - 189
Journal Article