The n-Ball Remainder Sequence: Geometric Invariant Separation from 2D Cross-Sections to 4D Spacetime

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Auteur principal: Howland, Geoffrey
Format: Recurso digital
Langue:anglais
Publié: Zenodo 2026
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_version_ 1866901819235500032
author Howland, Geoffrey
author_facet Howland, Geoffrey
contents <h2>The n-Ball Remainder Sequence: Geometric Invariant Separation from 2D Cross-Sections to 4D Spacetime</h2> <p>This paper is part of the HOWL research archive—a collection of physics papers exploring integer fraction derivations across multiple domains using exact arithmetic and automated comparison.</p> <h3>Falsification Criteria</h3> <p>All papers in this archive are subject to falsification through direct comparison to published experimental measurements. Each derived value is tested against independent data with explicit PASS/FAIL criteria. Any derived value that fails its comparison is documented and published alongside the successes.</p> <h3>Research Context</h3> <p>This archive documents an ongoing research program in integer fraction physics. The methodology is: derive values from gauge group integers using exact fraction arithmetic, compare to published measurements, and document all results including failures. The archive spans multiple physics domains connected through the soliton boundary framework described in the constituent papers.</p> <h3>Package Contents</h3> <ul> <li><code>manuscript.md</code>: The complete derivation and supporting analysis.</li> <li><code>README.md</code>: Navigation, dependencies, and citation (Registry: HOWL-MATH-5-2026).</li> </ul> <p><strong>Dependencies:</strong> HOWL-MATH-1-2026, HOWL-MATH-4-2026, HOWL-PHYS-10-2026</p> <p><strong>Motto:</strong> Derive. Compare. Publish.<br><strong>Status:</strong> Complete</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_19532193
institution Zenodo
language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle The n-Ball Remainder Sequence: Geometric Invariant Separation from 2D Cross-Sections to 4D Spacetime
Howland, Geoffrey
python
<h2>The n-Ball Remainder Sequence: Geometric Invariant Separation from 2D Cross-Sections to 4D Spacetime</h2> <p>This paper is part of the HOWL research archive—a collection of physics papers exploring integer fraction derivations across multiple domains using exact arithmetic and automated comparison.</p> <h3>Falsification Criteria</h3> <p>All papers in this archive are subject to falsification through direct comparison to published experimental measurements. Each derived value is tested against independent data with explicit PASS/FAIL criteria. Any derived value that fails its comparison is documented and published alongside the successes.</p> <h3>Research Context</h3> <p>This archive documents an ongoing research program in integer fraction physics. The methodology is: derive values from gauge group integers using exact fraction arithmetic, compare to published measurements, and document all results including failures. The archive spans multiple physics domains connected through the soliton boundary framework described in the constituent papers.</p> <h3>Package Contents</h3> <ul> <li><code>manuscript.md</code>: The complete derivation and supporting analysis.</li> <li><code>README.md</code>: Navigation, dependencies, and citation (Registry: HOWL-MATH-5-2026).</li> </ul> <p><strong>Dependencies:</strong> HOWL-MATH-1-2026, HOWL-MATH-4-2026, HOWL-PHYS-10-2026</p> <p><strong>Motto:</strong> Derive. Compare. Publish.<br><strong>Status:</strong> Complete</p>
title The n-Ball Remainder Sequence: Geometric Invariant Separation from 2D Cross-Sections to 4D Spacetime
topic python
url https://doi.org/10.5281/zenodo.19532193