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A Rheological Approach to the Viscous Fermionic Vacuum Condensate. IX. Rigorous Hydrodynamic Derivation of Newton's Gravitational Constant from the Rheological Parameters of the Viscous Vacuum Condensate
2026-08-29
This paper presents a complete, explicit, and non-empirical step-by-step derivation of Newton's gravitational constant G from the intrinsic parameters of the Viscous Fermionic Condensate (VFC). We demonstrate that gravity is not a geometric property of empty spacetime, but a macroscopic pressure gradient induced by higher-order rheological relaxation. By tracing the exact numerical and dimensional sequence from the baseline vacuum invariants through golden ratio deformation and 3D spatial projections, the precise value of 6.6743 × 10^-11 m^3 /(kg • s^2) is established in full compliance with experimental CODATA measurements.
Ссылка для цитирования:
Shlyapik A. 2026. A Rheological Approach to the Viscous Fermionic Vacuum Condensate. IX. Rigorous Hydrodynamic Derivation of Newton's Gravitational Constant from the Rheological Parameters of the Viscous Vacuum Condensate. PREPRINTS.RU. https://doi.org/10.24108/preprints-3116266
Список литературы
1. A. Shlyapik, A Rheological Approach to the Viscous Fermionic Vacuum Condensate, J. Exp. Theor. Phys., (accepted, in press), Manuscript ID: JETP2660290Shlyapik. (2026).
2. A. Shlyapik, Rheological Approach to the Viscous Fermionic Vacuum Condensate. II. Viscous Electrodynamics, J. Exp. Theor. Phys., (accepted, in press), Manuscript ID: JETP2660315Shlyapik. (2026).
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