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April 12, 20260 citationsOpen Access

Thermodynamic Unification of Electromagnetism and Gravity via Vacuum Free-Energy Gradients

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RPRajendra S. PrajapatiIndian Institute of Information Technology Vadodara

Key Points

  • This research aims to unify electromagnetism and gravity using a thermodynamic approach based on vacuum properties.
  • Developed a thermodynamic framework modeling vacuum as a medium with electromagnetic susceptibilities.
  • Derived Maxwell’s equations via variational principles including a gravitational term from energy density gradients.
  • Predicted deviations in gravitational fields near intense electromagnetic sources.
  • Identified small but measurable variations in gravitational fields near strong electromagnetic sources.
  • Predicted potential changes in the effective gravitational constant G under extreme field gradients.
  • Provided falsifiable predictions that explain certain gravitational anomalies without invoking dark matter or energy.

Abstract

This paper proposes a thermodynamic framework for unifying electromagnetism and gravity by modeling the vacuum as a medium with electromagnetic susceptibilities, where gravity emerges from gradients in vacuum free energy. Starting froma Helmholtz-type energy density functional, we derive Maxwell’s equations using variational principles and introduce a gravitational term that arises naturally from the energy density gradient. The model predicts small but measurable deviations ingravitational fields near intense electromagnetic sources, and possible variations in the effective gravitational constant Gunder extreme field gradients. These predictions are falsifiable and offer explanations for certain gravitational anomalies with-out invoking dark matter or dark energy. Consistency with classical and quantum field theory is addressed, and experimental avenues for verification are outlined.

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Cite This Study

Rajendra S. Prajapati (2026) studied this question.

synapsesocial.com/papers/69db37964fe01fead37c593dhttps://doi.org/10.5281/zenodo.19492907
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