Journal of Modern Classical Physics & Quantum Neuroscience

Open Access • Peer Reviewed • Bi-Monthly Publication

Gravity is Electromagnetism: A Theoretical and Experimental Study

Authors: Kumar Bittu
Published: 2025-08-22
Pages: 1-9
DOI: 10.63721/25JPQN0122
Keywords: Electromagnetic Gravity, Nuclear Polarization Force, Charge-Dependent Gravity, Experimental Validation of Gravity, Gravity at Atomic Scale, Electrostatic Influence on Gravitation
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Abstract

This paper introduces a new experimentally supported framework for understanding gravity, proposing that it originates from atomic nuclei rather than from mass or the curvature of space-time. Unlike Newtonian and Einsteinian models—which define gravity as a mass-based attraction or the result of spacetime deformation— this theory presents gravity as an electromagnetic force generated by positively charged nuclei. It introduces the concept of a "Nuclear Polarization Force" to explain gravitational interactions between nuclei and other bodies—neutral, negatively charged, or positively charged—through polarization and charge dynamics.

To validate this theory, an experiment was conducted demonstrating measurable weight differences in objects when charged positively or negatively, compared to their neutral state. The results suggest that gravitational force is influenced not only by mass but also by electric charge. This model aims to unify gravitational be havior across atomic, planetary, and cosmic scales, offering a new perspective on the dynamics of the solar system, black holes, and the expansion of the universe. By redefining gravity in electromagnetic terms, this research addresses existing gaps in cosmology and quantum gravity, potentially opening new pathways in fundamental physics.

Copyright & License

© 2025 The Author(s). Published by WM Journals.

This is an open access article distributed under the terms of the Creative Commons Attribution 4.0 International License (CC BY 4.0), which permits unrestricted use, distribution and reproduction in any medium, provided the original author and source are credited.

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