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Thermodynamics of Equilibrium Alkali Plasma. Simple and Accurate Analytical Model for Non-Trivial Case

Published 19 Nov 2021 in cond-mat.mtrl-sci, cond-mat.dis-nn, cond-mat.stat-mech, physics.comp-ph, and physics.plasm-ph | (2111.10442v1)

Abstract: Analytical equation of state for pure alkali metals (lithium, sodium, potassium, rubidium and cesium) in equilibrium gas phase is proposed. This equation has a simple form, generalizes the equation of state for a perfect gas and is universal for all alkali elements. It correctly reproduces the experimental data for the equilibrium gas phase over a wide range of pressures (up to $\sim 105$~Pa) and temperatures (up to $\sim 3 \cdot 103$~K). On the basis of this equation of state, expressions for thermal and caloric coefficients as well as for \textit{other physical characteristics} are obtained. The results of this study confirm feasibility of the principle of corresponding states in relation to the group of alkali elements.

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