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March 2, 20260 citationsOpen Access

Recursive Load Distribution in Thermodynamic Phase Transitions: A Tier-7 Instantiation of the Closed vs Distributed Recursion Law

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APAndrew Simon Paton

Key Points

  • The aim is to explore the relationship between recursive load distribution and thermodynamic phase transitions.
  • Tier-7 domain instantiation of the Paton Closed vs Distributed Recursion Law
  • Analysis of macroscopic phase stability and instability
  • Examination of recursive load localization and admissibility conditions
  • Identified distributed recursive constraint sharing enhances phase stability
  • Localized recursive load leads to phase instability
  • Confirmed compatibility with classical and statistical thermodynamics

Abstract

This paper presents a Tier-7 domain instantiation of the Paton Closed vs Distributed Recursion Law within thermodynamic phase transition analysis. It demonstrates that macroscopic phase stability corresponds to distributed recursive constraint sharing across microstate ensembles, while phase instability arises when recursive load localizes beyond admissible tolerance thresholds. The framework introduces no new physical laws and remains fully compatible with classical and statistical thermodynamics. Its contribution is structural: identifying recursive load localization as a cross-domain admissibility condition governing regime transition under constraint.

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Cite This Study

Andrew Simon Paton (2026) studied this question.

synapsesocial.com/papers/69a52e64f1e85e5c73bf2077https://doi.org/10.5281/zenodo.18812100
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