Estimating Solid–Liquid Phase Change Enthalpies and Entropies (original) (raw)
Calculation of the Isobaric Heat Capacities of the Liquid and Solid Phase of Organic Compounds at 298.15K by Means of the Group-Additivity Method
Rudolf Naef
Molecules, 2020
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Calculation of the Isobaric Heat Capacities of the Liquid and Solid Phase of Organic Compounds at 298.15K by Means of a Generally Applicable Computer Algorithm Based on the Group-Additivity Method
RUDOLF NAEF
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Calculation of Five Thermodynamic Molecular Descriptors by Means of a General Computer Algorithm Based on the Group-Additivity Method: Standard Enthalpies of Vaporization, Sublimation and Solvation, and Entropy of Fusion of Ordinary Organic Molecules and Total Phase-Change Entropy of Liquid Crystals
Rudolf Naef
Molecules (Basel, Switzerland), 2017
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Calculation of the Isobaric Heat Capacities of the Liquid and Solid Phase of Organic Compounds at and around 298.15 K Based on Their “True” Molecular Volume
RUDOLF NAEF
Molecules
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Thermodynamic properties of organic compounds
Augusto Cingolani
Journal of Thermal Analysis, 1974
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Za Za
Journal of Physical and Chemical Reference Data, 1993
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A group additivity approach for the estimation of heat capacities of organic liquids and solids at 298 K
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Structural Chemistry, 1993
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Fluid Phase Equilibria, 2013
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Vincent Wilding
Journal of Chemical & Engineering Data, 2004
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Augusto Cingolani
Journal of Thermal Analysis, 1975
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Kostis Magoulas
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International Journal of Engineering Research and Technology (IJERT), 2012
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