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Equation of State for Supercooled Water Near the Liquid-Liquid Critical Point

We have developed a scaled parametric equation of state to describe and predict thermodynamic properties of supercooled water. The equation of state, built on the growing evidence that the critical point of supercooled liquid-liquid water separation exists, is universal in terms of theoretical scali...

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Published in:arXiv.org 2006-09
Main Authors: Anisimov, M A, Fuentevilla, D A
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description We have developed a scaled parametric equation of state to describe and predict thermodynamic properties of supercooled water. The equation of state, built on the growing evidence that the critical point of supercooled liquid-liquid water separation exists, is universal in terms of theoretical scaling fields and is shown to belong to the Ising-model class of universality. The theoretical scaling fields are postulated to be analytical combinations of the physical fields, pressure and temperature. The equation of state enables us to accurately locate the "Widom line" (the locus of stability minima) and determine that the critical pressure is considerably lower than predicted by computer simulations.
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subjects Computer simulation
Critical point
Critical pressure
Equations of state
Ising model
Parametric equations
Scaling
Thermodynamic properties
Water
title Equation of State for Supercooled Water Near the Liquid-Liquid Critical Point
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