Structure-First Physics: A Framework Overview
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| Formato: | Recurso digital |
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2026
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| _version_ | 1866902223678603264 |
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| author | Doumbouya, Lisa Michelle |
| author_facet | Doumbouya, Lisa Michelle |
| contents | <p>This paper presents a structure-first framework for physics in which constraint geometry determines admissible degrees of freedom, and observable phenomena arise from the accessibility and organization of those degrees of freedom.</p> <p>A unified ordering is introduced: constraint geometry → admissible modes → observable spectra → registrability. Within this framework, dynamics are interpreted as transitions between admissible configurations, matter as a regime of bounded registrability, and radiation as a signature of structural reorganization or breakdown.</p> <p>Light is treated as a timing and coherence reference, frequency as the measurable expression of resolution, and time as the ordered indexing of resolvable transitions. Observable differences across physical regimes are therefore interpreted as variations in accessibility under constraint rather than as changes in underlying structure.</p> <p>The framework integrates conceptual definitions, quantitative measurement tools, and observational applications into a single non-interpretive structure. It preserves the validity of existing physical models within their respective domains while providing a higher-level classification of regimes based on constraint, accessibility, and admissibility</p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_19493862 |
| institution | Zenodo |
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| publishDate | 2026 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | Structure-First Physics: A Framework Overview Doumbouya, Lisa Michelle structure-first physics constraint geometry admissible configurations degrees of freedom spectral accessibility registrability structural entorphy admissible path selection resolution and time constraint-driven systems structural relaxation regime classification <p>This paper presents a structure-first framework for physics in which constraint geometry determines admissible degrees of freedom, and observable phenomena arise from the accessibility and organization of those degrees of freedom.</p> <p>A unified ordering is introduced: constraint geometry → admissible modes → observable spectra → registrability. Within this framework, dynamics are interpreted as transitions between admissible configurations, matter as a regime of bounded registrability, and radiation as a signature of structural reorganization or breakdown.</p> <p>Light is treated as a timing and coherence reference, frequency as the measurable expression of resolution, and time as the ordered indexing of resolvable transitions. Observable differences across physical regimes are therefore interpreted as variations in accessibility under constraint rather than as changes in underlying structure.</p> <p>The framework integrates conceptual definitions, quantitative measurement tools, and observational applications into a single non-interpretive structure. It preserves the validity of existing physical models within their respective domains while providing a higher-level classification of regimes based on constraint, accessibility, and admissibility</p> |
| title | Structure-First Physics: A Framework Overview |
| topic | structure-first physics constraint geometry admissible configurations degrees of freedom spectral accessibility registrability structural entorphy admissible path selection resolution and time constraint-driven systems structural relaxation regime classification |
| url | https://doi.org/10.5281/zenodo.19493862 |