preprints_ui: zp8cq_v1
Data license: ODbL (database) & original licenses (content) · Data source: Open Science Framework
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zp8cq_v1 | Diophantus' On Polygonal Numbers via Recursive Fractal Dynamics and Prime-Modulated Geometry | We rigorously complete Diophantus’ seminal work, On Polygonal Numbers, by scaffolding classical number-theoretic results with modern analytic, algebraic, and computational techniques. This construct extends polygonal number theory through recursive solutions of Pell equations, analytic connections to zeta functions and modular forms, and prime-modulated torsion fields. By incorporating fractal dynamics and geometric deformations, we establish a comprehensive framework for polygonal representations of integers, revealing new structural symmetries and density theorems within the space of polygonal partitions | 2025-05-05T11:26:03.905952 | 2025-05-05T11:28:01.902754 | 2025-05-05T11:27:52.294999 | 2025-04-01T04:00:00 | https://doi.org/10.5281/zenodo.15121962 | thesiscommons | 1 | pending | 1 | 1 | https://doi.org/10.31237/osf.io/zp8cq_v1 | CC-By Attribution 4.0 International | Diophantus | ["Diophantus"] | Julian Del Bel | [{"id": "rgxk5", "name": "Julian Del Bel", "index": 0, "orcid": "0009-0008-1143-4193", "bibliographic": true}] | Julian Del Bel | Physical Sciences and Mathematics; Architecture; Life Sciences; Arts and Humanities; Education; Engineering | [{"id": "59bac90254be8103137da28b", "text": "Physical Sciences and Mathematics"}, {"id": "59bac90254be8103137da28c", "text": "Architecture"}, {"id": "59bac90254be8103137da28e", "text": "Life Sciences"}, {"id": "59bac90254be8103137da28f", "text": "Arts and Humanities"}, {"id": "59bac90254be8103137da290", "text": "Education"}, {"id": "59bac90254be8103137da292", "text": "Engineering"}] | https://osf.io/download/6818a060b0c86c9ffe5ef64c | 0 | not_applicable | not_applicable | [] | 2025-05-06T00:11:29.339717 |