Derivation of Fundamental Constants from Aether Closure: Magnetic Charge, Chronovibration, and Gravitational Scaling in QMU

Dynamic Research (United States)

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Abstract

This work develops a closed derivation framework for fundamental physical constants within the Aether Physics Model (APM) using Quantum Measurement Units (QMU). The approach begins from a minimal substrate set consisting of electrostatic charge, a gravitational substrate quantity (denoted Gforce), electron mass, the Compton wavelength, and a fundamental quantum frequency. From these quantities, all major physical constants are derived through geometric closure relations. The propagation relation is given by\[c = \lambda_C F_q,\]establishing the speed of light as a direct consequence of spatial and chronovibrational structure. Electromagnetic propagation follows from the Aether closure relation\[A_u \cdot…

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Topics & keywords

Keywords
  • Gravitation
  • Physical constant
  • Observable
  • Fine-structure constant
  • Scaling
  • Quantum
  • Constant (computer programming)
  • Electromagnetism
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