| _version_ | 1866901178674053120 |
|---|---|
| author | Morrow, Robert T ChatGPT(OpenAI) |
| author_facet | Morrow, Robert T ChatGPT(OpenAI) |
| contents | <p>Newtonian gravitation and Coulomb electrostatics are historically treated as distinct long-range interactions, their similarities dismissed as coincidence. This paper<br>demonstrates that they are in fact complementary manifestations of a single underlying mechanism: the ACORN mass partition and its 5D curvature dynamics.<br>The empirically established inertial decomposition<br>m = mNE + meq, meq =<br>4<br>3π<br>q<br>e<br>m, (1)<br>identifies two internal energy channels within every massive particle: a neutral even<br>component mNE that does not change sign under charge inversion, and an odd electromagnetic component meq that does. These channels exist as orthogonal hyperbolic<br>phasors in the (x, cT) plane and exchange curvature at the Compton frequency, preserving invariant mass.<br>When many ACORNs combine, incoherent phases among meq cancel, while mNE<br>adds statistically, yielding an always-attractive inverse-square interaction—Newtonian<br>gravity. When odd-channel phases remain coherent, the resulting large-scale curvature<br>generates a signed inverse-square interaction, recovering Coulomb’s law.<br>Thus,<br>FG(r) = G<br>mAmB<br>r<br>2<br>, FE(r) = 1<br>4πϵ0<br>qAqB<br>r<br>2<br>, (2)<br>1<br>arise not from separate forces, fields, or particles, but from the same curvature engine operating in different coherence regimes. Gravity and electrostatics are therefore<br>unified—not by quantisation or symmetry groups—but by geometry.</p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_17727281 |
| institution | Zenodo |
| language | eng |
| publishDate | 2025 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | One ACORN, Two Forces: Newton and Coulomb as Complementary Projections of 5D Curvature Morrow, Robert T ChatGPT(OpenAI) Coulomb, Newton, Gravity, Electrostatic, Einstein, Unification, ACORN <p>Newtonian gravitation and Coulomb electrostatics are historically treated as distinct long-range interactions, their similarities dismissed as coincidence. This paper<br>demonstrates that they are in fact complementary manifestations of a single underlying mechanism: the ACORN mass partition and its 5D curvature dynamics.<br>The empirically established inertial decomposition<br>m = mNE + meq, meq =<br>4<br>3π<br>q<br>e<br>m, (1)<br>identifies two internal energy channels within every massive particle: a neutral even<br>component mNE that does not change sign under charge inversion, and an odd electromagnetic component meq that does. These channels exist as orthogonal hyperbolic<br>phasors in the (x, cT) plane and exchange curvature at the Compton frequency, preserving invariant mass.<br>When many ACORNs combine, incoherent phases among meq cancel, while mNE<br>adds statistically, yielding an always-attractive inverse-square interaction—Newtonian<br>gravity. When odd-channel phases remain coherent, the resulting large-scale curvature<br>generates a signed inverse-square interaction, recovering Coulomb’s law.<br>Thus,<br>FG(r) = G<br>mAmB<br>r<br>2<br>, FE(r) = 1<br>4πϵ0<br>qAqB<br>r<br>2<br>, (2)<br>1<br>arise not from separate forces, fields, or particles, but from the same curvature engine operating in different coherence regimes. Gravity and electrostatics are therefore<br>unified—not by quantisation or symmetry groups—but by geometry.</p> |
| title | One ACORN, Two Forces: Newton and Coulomb as Complementary Projections of 5D Curvature |
| topic | Coulomb, Newton, Gravity, Electrostatic, Einstein, Unification, ACORN |
| url | https://doi.org/10.5281/zenodo.17727281 |