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July 13, 2026Open Access

Quantum Ψ Field Thermodynamics: A Unified Theory from Quantum Ψ Field Density to Temperature, Entropy, and Cosmic Background Radiation

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卫梁卫星 梁

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Overview

Randomized trial reveals a unified approach to temperature and entropy in quantum Ψ fields, suggesting fundamental insights into thermodynamics.

Key Points

  • This research aims to provide a fundamental understanding of thermodynamics through a unified framework based on Quantum Ψ Field. It addresses the essential nature of heat, temperature, and entropy.
  • Establishes a theoretical framework derived from Quantum Ψ Field Cosmology.
  • Derives the Second Law of Thermodynamics from Polaron diffusion equations.
  • Proposes testable predictions including thermal conductivity and planetary volume dependence.
  • Demonstrates that temperature is defined by Polaron density and mass, altering traditional views of temperature measurement.
  • Establishes the Second Law of Thermodynamics as a theorem, not just a postulate, based on Polaron diffusion.
  • Predicts varied molar volume on different planetary bodies, such as Mars, and introduces a unified scaling law for solid thermal expansion.

Cite This Study

卫星 梁 (2026) studied this question.

synapsesocial.com/papers/6a54835d475c38bf615a5f05https://doi.org/10.5281/zenodo.21307185
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