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April 22, 20260 citationsOpen Access

Unified Admissibility Theory A Constraint-Geometric Framework for Physical, Quantum, and Computational Systems

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JSJohn Strother

Key Points

  • The research aims to create a cohesive framework for understanding system validity and evolution across multiple disciplines.
  • Developed a unified framework based on constraint-defined admissibility.
  • Derived a variational formulation that relates system dynamics to minimizing a residual function.
  • Extended the theory to include a quantum aspect with implications for the Schrödinger equation.
  • Demonstrated that system evolution can be described as minimizing deviation from admissibility.
  • Provided a coherent explanation for probabilistic behavior emerging from constraint structures.
  • Unified the descriptions of classical mechanics, quantum systems, and computational processes through a single theoretical lens.

Abstract

We introduce a unified framework in which system validity, dynamics, and evolution are governed by constraint-defined admissibility. A system state is admissible if it satisfies a set of constraints, and deviation from admissibility is quantified by a residual function α(S). We show that system evolution can be expressed as a gradient-driven process minimizing α(S), providing a unified description of physical motion, computational optimization, and control systems. We further extend the framework to a variational formulation and demonstrate that α(S) acts as a generalized potential. A quantum formulation is derived in which α(S) appears as a constraint-based potential term in the Schrödinger equation. Measurement is interpreted as constraint injection, and apparent probabilistic behavior emerges from admissibility structure. The theory provides a unified description across classical mechanics, quantum systems, and computational processes, reframing dynamics as the minimization of inconsistency with respect to constraint-defined admissibility.

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Cite This Study

John Strother (2026) studied this question.

synapsesocial.com/papers/69e865fd6e0dea528ddea6achttps://doi.org/10.5281/zenodo.19671637
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