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A Thermodynamic Analysis of Enhanced Metastability in Isochoric Supercooled Liquids

cond-mat.soft · 2026-04-29 · unverdicted · novelty 5.0

For any substance where the solid is less dense than the liquid, the Helmholtz driving force for solidification is smaller in isochoric than in isobaric conditions, supplying a thermodynamic explanation for enhanced supercooling stability and a bulk-data-derived stability number.

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  • A Thermodynamic Analysis of Enhanced Metastability in Isochoric Supercooled Liquids cond-mat.soft · 2026-04-29 · unverdicted · none · ref 17

    For any substance where the solid is less dense than the liquid, the Helmholtz driving force for solidification is smaller in isochoric than in isobaric conditions, supplying a thermodynamic explanation for enhanced supercooling stability and a bulk-data-derived stability number.