Unified Consequence of CG Closed Physical Kernels

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Autore principale: Maley, Amos
Natura: Recurso digital
Pubblicazione: Zenodo 2026
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author Maley, Amos
author_facet Maley, Amos
contents <p>This paper establishes the unified consequences that follow once physical kernels are closed under constraint generation (CG). When admissibility and standing preservation are enforced, the physical kernel admits no further extension, supplementation, or hidden structure. All admissible physical descriptions are shown to be constrained to a single closed kernel up to internal re-description.</p> <p>The analysis is necessity-based and eliminative. It demonstrates that attempts to introduce additional dynamics, sectors, forces, or explanatory layers beyond a CG-closed kernel rely on illicit parameter introduction, scope expansion, or re-metricization that violates admissibility. When these moves are excluded, the physical kernel is necessarily complete, and all remaining variation collapses into representational bookkeeping rather than physical structure.</p> <p>The result unifies disparate closure consequences—across classical, quantum, and relativistic descriptions—under a single admissibility-based constraint. No models, equations, or construction pathways are introduced. The paper records a terminal result: once a physical kernel is CG-closed, no deeper or alternative physical structure remains admissible.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_18518474
institution Zenodo
language
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle Unified Consequence of CG Closed Physical Kernels
Maley, Amos
<p>This paper establishes the unified consequences that follow once physical kernels are closed under constraint generation (CG). When admissibility and standing preservation are enforced, the physical kernel admits no further extension, supplementation, or hidden structure. All admissible physical descriptions are shown to be constrained to a single closed kernel up to internal re-description.</p> <p>The analysis is necessity-based and eliminative. It demonstrates that attempts to introduce additional dynamics, sectors, forces, or explanatory layers beyond a CG-closed kernel rely on illicit parameter introduction, scope expansion, or re-metricization that violates admissibility. When these moves are excluded, the physical kernel is necessarily complete, and all remaining variation collapses into representational bookkeeping rather than physical structure.</p> <p>The result unifies disparate closure consequences—across classical, quantum, and relativistic descriptions—under a single admissibility-based constraint. No models, equations, or construction pathways are introduced. The paper records a terminal result: once a physical kernel is CG-closed, no deeper or alternative physical structure remains admissible.</p>
title Unified Consequence of CG Closed Physical Kernels
url https://doi.org/10.5281/zenodo.18518474