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2026
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| Online Access: | https://doi.org/10.5281/zenodo.20257695 |
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| _version_ | 1866902096527228928 |
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| author | Wilson, Stephen |
| author_facet | Wilson, Stephen |
| contents | <p>This manuscript documents a pattern of consilience across twelve independent scientific papers spanning cosmology, astrophysics, macrobiology, neuroscience, and quantum information. It highlights how researchers operating in fundamentally disconnected fields are independently converging on identical geometric and structural mechanisms—such as discrete vacuum interfaces, Ricci solitons, and specific topological phase transitions—without prior cross-communication. By synthesizing these external findings alongside a demonstration of internal structural consistency across multiple physical scales, the document traces a unifying mathematical architecture emerging throughout the current literature. The analysis serves as a formal record of these independent convergences, suggesting that these shared geometric features reflect genuine, underlying foundational constraints rather than isolated coincidences.</p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_20257695 |
| institution | Zenodo |
| language | |
| publishDate | 2026 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | Convergence Without Communication: Twelve Independent Paths to the BMOS Geometric Framework Wilson, Stephen Consilience of Inductions Cross Disciplinary Convergence Scale Invariance Zero Free Parameter Models Discrete Geometry 16 cell Polytope (Hexadecachoron) Topological Phase Transition Asymptotic Ricci Solutions Structural Tessellation Discrete Vacuum Interfaces Quantum Cosmology Network Flow Theory Emergent Gauge Symmetries Biological Cosmological Constant <p>This manuscript documents a pattern of consilience across twelve independent scientific papers spanning cosmology, astrophysics, macrobiology, neuroscience, and quantum information. It highlights how researchers operating in fundamentally disconnected fields are independently converging on identical geometric and structural mechanisms—such as discrete vacuum interfaces, Ricci solitons, and specific topological phase transitions—without prior cross-communication. By synthesizing these external findings alongside a demonstration of internal structural consistency across multiple physical scales, the document traces a unifying mathematical architecture emerging throughout the current literature. The analysis serves as a formal record of these independent convergences, suggesting that these shared geometric features reflect genuine, underlying foundational constraints rather than isolated coincidences.</p> |
| title | Convergence Without Communication: Twelve Independent Paths to the BMOS Geometric Framework |
| topic | Consilience of Inductions Cross Disciplinary Convergence Scale Invariance Zero Free Parameter Models Discrete Geometry 16 cell Polytope (Hexadecachoron) Topological Phase Transition Asymptotic Ricci Solutions Structural Tessellation Discrete Vacuum Interfaces Quantum Cosmology Network Flow Theory Emergent Gauge Symmetries Biological Cosmological Constant |
| url | https://doi.org/10.5281/zenodo.20257695 |