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June 14, 20260 citationsOpen Access

Article 16: Transversal-Longitudinal Equivalence, Induced Photon Inertia, and the Geometric Origin of Mass (mc² = h.nu) / Article 16 : L'Équivalence Transversale-Longitudinale, l'Inertie Induite du Photon et l'Origine Géométrique de la Masse (mc² = h.nu)

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HMHubert MASSAU

Key Points

  • The aim is to resolve the equivalence between quantum energy and relativistic inertia through a mechanical framework.
  • Utilized continuum mechanics to analyze wave propagation in a one-dimensional spatial fabric.
  • Demonstrated the generation of gravitational waves from electromagnetic waves of double frequency.
  • Established that the photon possesses apparent inertia due to the tension in the spatial fabric.
  • Proposed that kinematic inertia arises from geometric deformations in the medium, not as an intrinsic particle property.

Abstract

This article mechanically resolves the fundamental equivalence between Planck's quantum energy (E=h. nu) and Einstein's relativistic inertia (E=mc²) within the framework of Massau Kinematics. It demonstrates through continuum mechanics that an electromagnetic (transversal) wave propagating on the one-dimensional spatial Fabric obligatorily generates a gravitational (longitudinal) wave of double frequency. The photon is therefore not "massless": its apparent inertia is the translation of the longitudinal restoring force imposed by the absolute tension of the Fabric (Fₚ). Thus, kinematic inertia is not an intrinsic property of the particle, but the geometric deformation exacted by the spatial tissue to tolerate the propagation of light. Cet article résout mécaniquement l'équivalence fondamentale entre l'énergie quantique de Planck (E=h. nu) et l'inertie relativiste d'Einstein (E=mc²) au sein de la Cinématique de Massau. Il démontre par la mécanique des milieux continus qu'une onde électromagnétique (transversale) se propageant sur la Trame spatiale unidimensionnelle engendre obligatoirement une onde gravitationnelle (longitudinale) de fréquence double. Le photon n'est donc pas "sans masse": son inertie apparente est la traduction de la force de rappel longitudinale imposée par la tension absolue de la Trame (Fₚ). Ainsi, l'inertie cinématique n'est pas une propriété intrinsèque de la particule, mais la déformation géométrique exigée par le tissu spatial pour tolérer la propagation lumineuse.

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Cite This Study

Hubert MASSAU (2026) studied this question.

synapsesocial.com/papers/6a2e4632b1cc60ccdea8b0b7https://doi.org/10.5281/zenodo.20663111
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