Entropies of solids are obtained experimentally as integrals of measured heat capacities over the temperature range from zero to ambient. Correspondingly, the Debye phonon distribution equation for solids provides a theoretical connection between these two chemical thermodynamic measures. We examine how the widely applicable Debye equation illuminates the relation between the corresponding experimental measures using more than 250 ionic solids. Estimation of heat capacities for simple ionic solids by the Dulong–Petit heat capacity limit, by the Neumann–Kopp elemental sum, and by the ion sum method is examined in relation to the Debye equation. We note that, and explain why, the ambient temperature heat capacities and entropies of ionic soli...
After discussion of other models for representing heat capacities, the volumetric model used in reso...
To utilize heat capacity determinations in the chemical thermodynamic region effectively, it is esse...
An equation of state is obtained for ionic crystals based on the Born theory by assuming that the th...
Thermodynamic properties, such as standard entropy, among others, have been shown to correlate well ...
Thermodynamic properties, such as standard entropy, among others, have been shown to correlate well ...
In an earlier simple “group contribution” method, molar volumes of organic and inorganic materials w...
Single-ion heat capacities, Cp(298)ion, are additive values for the estimation of room-temperature (...
Standard absolute entropies of many inorganic materials are unknown; this precludes a full understan...
Single-ion standard entropies, S-ion degrees, are additive values for estimation of the room-tempera...
Lattice heat capacity is an important property of solid substances because it is a major ( and often...
Single-ion standard entropies, Sion, are additive values for estimation of the room-temperature (298...
By virtue of our recently established relationships, knowledge of the formula unit volume, V-m, of a...
Thermodynamics establishes equilibrium relations among thermodynamic parameters (“properties”) and d...
Heat capacity prediction and estimation methods of solid organic compounds in terms of temperature a...
It is found that there is a nearly constant difference between the normalized values of the heat ca...
After discussion of other models for representing heat capacities, the volumetric model used in reso...
To utilize heat capacity determinations in the chemical thermodynamic region effectively, it is esse...
An equation of state is obtained for ionic crystals based on the Born theory by assuming that the th...
Thermodynamic properties, such as standard entropy, among others, have been shown to correlate well ...
Thermodynamic properties, such as standard entropy, among others, have been shown to correlate well ...
In an earlier simple “group contribution” method, molar volumes of organic and inorganic materials w...
Single-ion heat capacities, Cp(298)ion, are additive values for the estimation of room-temperature (...
Standard absolute entropies of many inorganic materials are unknown; this precludes a full understan...
Single-ion standard entropies, S-ion degrees, are additive values for estimation of the room-tempera...
Lattice heat capacity is an important property of solid substances because it is a major ( and often...
Single-ion standard entropies, Sion, are additive values for estimation of the room-temperature (298...
By virtue of our recently established relationships, knowledge of the formula unit volume, V-m, of a...
Thermodynamics establishes equilibrium relations among thermodynamic parameters (“properties”) and d...
Heat capacity prediction and estimation methods of solid organic compounds in terms of temperature a...
It is found that there is a nearly constant difference between the normalized values of the heat ca...
After discussion of other models for representing heat capacities, the volumetric model used in reso...
To utilize heat capacity determinations in the chemical thermodynamic region effectively, it is esse...
An equation of state is obtained for ionic crystals based on the Born theory by assuming that the th...