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dc.contributor.authorYilmaz N. N.-
dc.contributor.authorKozub P. A.-
dc.contributor.authorRevyakina M. G.-
dc.contributor.authorKozub S. N.-
dc.contributor.authorRevyakin G. V.-
dc.contributor.authorUlyanov N. V.-
dc.contributor.authorLukianova V. A.-
dc.contributor.authorNorik L. O.-
dc.contributor.authorCherneva V. E.-
dc.date.accessioned2026-05-20T19:49:50Z-
dc.date.available2026-05-20T19:49:50Z-
dc.date.issued2026-
dc.identifier.citationYilmaz N. N. Semi-empirical universal model of heat capacity based on the Laplace distribution / N. N. Yilmaz, P. A. Kozub, M. G. Revyakina and other // Low Temp. Phys. 1 April 2026. – 2026. - №52 (4). – Р. 381–386.uk_UA
dc.identifier.urihttps://repository.hneu.edu.ua/handle/123456789/40106-
dc.description.abstractA semi-empirical universal model describing the temperature dependence of heat capacity is developed using the Laplace distribution as a physical basis and its log-logistic analogue as an analytical form. The proposed formulation unifies the classical Debye, Einstein, and Tarasov approaches and provides an accurate representation of experimental data for solids, liquids, and gases over the entire temperature range of their stability. The model has only two parameters: the characteristic temperature and the rate of change of state, which correlate with the Debye temperature and the structural dimensionality of the substance. Analytical expressions derived from the model allow direct calculation of enthalpy and entropy without numerical integration. The log-logistic form preserves approximation accuracy within the uncertainty of measurements while enabling analytical differentiation and integration of thermodynamic functions. The proposed system of functions offers a unified, physically consistent, and computationally efficient framework for evaluating and predicting the heat capacity and related thermodynamic properties of materials.uk_UA
dc.language.isoenuk_UA
dc.subjectheat capacityuk_UA
dc.subjectLaplace distributionuk_UA
dc.subjectlog-logistic functionuk_UA
dc.subjectsemi-empirical modeluk_UA
dc.subjectthermodynamic propertiesuk_UA
dc.subjecttemperature dependenceuk_UA
dc.titleCherneva; Semi-empirical universal model of heat capacity based on the Laplace distributionuk_UA
dc.typeArticleuk_UA
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