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Main Author: ueda, takashi
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Published: Zenodo 2026
Online Access:https://doi.org/10.5281/zenodo.19342129
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author ueda, takashi
author_facet ueda, takashi
contents <p>This paper presents a mathematical derivation of the unified field equation by reducing</p> <p>it to a common denominator to extract the product of effective masses M1M2. This process</p> <p>naturally reveals an interaction term (mq term) where gravity and electromagnetism merge.</p> <p>Furthermore, we demonstrate that while this equation maintains geometric symmetry in</p> <p>the “equilibrium state” (F = 0), aligning with classical conservation laws (action-reaction</p> <p>and momentum conservation), this symmetry breaks down in the “non-equilibrium state”</p> <p>(F ̸= 0). This suggests a mathematical basis for systems to obtain spontaneous thrust</p> <p>through geometric configurations of spacetime.</p>
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institution Zenodo
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publishDate 2026
publisher Zenodo
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spellingShingle Asymmetric Interactions and Non-Equilibrium Energy Dynamics in Unified Field Theory — Derivation of Gravito-Electromagnetic Term mq via Effective Mass M Expansion and the Phase Transition of Conservation Laws —
ueda, takashi
<p>This paper presents a mathematical derivation of the unified field equation by reducing</p> <p>it to a common denominator to extract the product of effective masses M1M2. This process</p> <p>naturally reveals an interaction term (mq term) where gravity and electromagnetism merge.</p> <p>Furthermore, we demonstrate that while this equation maintains geometric symmetry in</p> <p>the “equilibrium state” (F = 0), aligning with classical conservation laws (action-reaction</p> <p>and momentum conservation), this symmetry breaks down in the “non-equilibrium state”</p> <p>(F ̸= 0). This suggests a mathematical basis for systems to obtain spontaneous thrust</p> <p>through geometric configurations of spacetime.</p>
title Asymmetric Interactions and Non-Equilibrium Energy Dynamics in Unified Field Theory — Derivation of Gravito-Electromagnetic Term mq via Effective Mass M Expansion and the Phase Transition of Conservation Laws —
url https://doi.org/10.5281/zenodo.19342129