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Unification of Force and Energy as Eigenvalue Problems: A Quantum Geometric Formulation of the State Vector K

Authors: ueda, takashi;

Unification of Force and Energy as Eigenvalue Problems: A Quantum Geometric Formulation of the State Vector K

Abstract

This paper proposes a fundamental shift in the unification of physics by defining Force (F) and Energy (E) as eigenvalues of a singular four-dimensional geometric state vector K. By moving beyond scalar approximations, we treat the interaction as an observation process where the operators Qˆ and Pˆ act upon the spacetime distortion K to yield the physical constants A and √ 3lp. This formulation suggests that the perceived reality of classical mechanics is a spectral manifestation of a deeper, unified geometric manifold, effectively integrating the measurement problem into the framework of a unified field theory.

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