Natural Closure and Observational Accessibility: A Constraint-Based Framework
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2026
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| _version_ | 1866901109104181248 |
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| author | Doumbouya, Lisa Michelle |
| author_facet | Doumbouya, Lisa Michelle |
| contents | <p>This paper introduces the Natural Closure Principle within a structure-first framework of physics. All phenomena that admit interaction, representation, or observable consequence are treated as belonging to a single physically admissible domain. Apparent distinctions between categories such as “natural,” “supernatural,” or “meta-physical” are reinterpreted as differences in accessibility and constraint rather than separate ontological classes.</p> <p>Admissible configurations are not intrinsically ordered. Apparent temporal sequence and dynamical relationships arise from the ordered registration of accessible configurations under constraint. Persistence of structure is further determined by the coherence of routing within accessible pathways.</p> <p>This formulation removes domain ambiguity while remaining consistent with established physical theories, providing a unified basis for interpreting observability, ordering, and system behaviour within a single constrained structural system.</p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_19143277 |
| institution | Zenodo |
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| publishDate | 2026 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | Natural Closure and Observational Accessibility: A Constraint-Based Framework Doumbouya, Lisa Michelle natural closure observability accessibility constraint admissible configurations quantum mechanics relational physics measurement theory causality temporal ordering structure-first physics structural accessibility coherent structural routing constraint dynamics observational accessibility unified physical domain <p>This paper introduces the Natural Closure Principle within a structure-first framework of physics. All phenomena that admit interaction, representation, or observable consequence are treated as belonging to a single physically admissible domain. Apparent distinctions between categories such as “natural,” “supernatural,” or “meta-physical” are reinterpreted as differences in accessibility and constraint rather than separate ontological classes.</p> <p>Admissible configurations are not intrinsically ordered. Apparent temporal sequence and dynamical relationships arise from the ordered registration of accessible configurations under constraint. Persistence of structure is further determined by the coherence of routing within accessible pathways.</p> <p>This formulation removes domain ambiguity while remaining consistent with established physical theories, providing a unified basis for interpreting observability, ordering, and system behaviour within a single constrained structural system.</p> |
| title | Natural Closure and Observational Accessibility: A Constraint-Based Framework |
| topic | natural closure observability accessibility constraint admissible configurations quantum mechanics relational physics measurement theory causality temporal ordering structure-first physics structural accessibility coherent structural routing constraint dynamics observational accessibility unified physical domain |
| url | https://doi.org/10.5281/zenodo.19143277 |