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March 19, 2026Gravitation and Cosmology0 citations

Geometrization of Physics: The Problem of Motion

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MKMagd E. Kahil

Key Points

  • The study aims to explore the geometrization of physics by formulating equations of motion for different objects.
  • Identified physical quantities using scalars, vectors, and tensors in various geometries.
  • Utilized covariant differentiation to analyze the impact of physical fields on object trajectories.
  • Examined parameter transformations between two nearby paths in Riemannian, non-Riemannian, and Finslerian geometries.
  • Revisited parameter transformation in the context of Clifford space to link microphysics and macrophysics.
  • Demonstrated how nonvanishing curvature and torsion affect the equations of motion.
  • Showed that the method successfully represents spinning and charged objects.
  • Highlighted potential connections between different physical scales through the geometrical framework.

Abstract

The geometrization of physics may be expressed in the context of finding equations of motion for different objects rather than the conventional concept of allocating field variables geometrically. This can be performed by identifying physical quantities in terms of scalars, vectors and tensors described in various geometries that admit a nonvanishing curvature and torsion of space-time. The effect of covariant differentiation may represent the effect of physical fields on the trajectory of objects. We adopt a method in which spinning and charged objects are expressed using a parameter transformation between two nearby paths separated by a deviation vector in Riemannian, non-Riemannian, and Finslerian geometries. Moreover, the concept of parameter transformation is being revisited in the context of Clifford space as a step of combining microphysics and macrophysics.

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Cite This Study

Magd E. Kahil (2026) studied this question.

synapsesocial.com/papers/69bb91c7496e729e6297f294https://doi.org/10.1134/s0202289325700574
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