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A Rheological Approach to the Viscous Fermionic Vacuum Condensate. X. The hydrodynamic nature of gravity and weightlessness
2026-08-30
Within the sovereign Fermionic Universe Hypothesis (FUH) and the OCEAN framework, we eliminate the abstract geometric constructs of the vacuum void (ΛCDM) by transposing gravitational physics onto the rigorous foundation of continuum mechanics. This paper presents a complete, non-empirical, and multi-dimensional integration of the Viscous Fermionic Condensate (VFC) across four fundamental pillars: ontology, physical mechanism, coupling constants, and boundary orbital mechanics. By executing a step-by-step hydrodynamic derivation from baseline vacuum invariants through golden ratio deformation, we calculate the exact numerical magnitude of Newton’s constant (G ≈ 6.6743 × 10^−11 m^3/(kg ·s^2)), demonstrating that gravity is a macroscopic pressuregradient of the substrate. We describe orbital weightlessness not as the absence of gravity, but as a state of local isotropic pressure equilibrium within a viscous medium.
Ссылка для цитирования:
Shlyapik A. 2026. A Rheological Approach to the Viscous Fermionic Vacuum Condensate. X. The hydrodynamic nature of gravity and weightlessness. PREPRINTS.RU. https://doi.org/10.24108/preprints-3116270
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).
3. A. Shlyapik, A Rheological Approach to the Viscous Fermionic Vacuum Condensate. III. Rheological Nature of Galactic Rotation Curves: Eliminating Dark Matter via ψ-Condensate Viscosity, J. Exp. Theor. Phys., (accepted, in press), ManuscriptID: JETP2660330Shlyapik. (2026).
4. A. Shlyapik, A Rheological Approach to the Viscous Fermionic Vacuum Condensate. IV. Relativistic Pericenter Precession of Mercury via ψ-Condensate Drag, J. Exp. Theor. Phys.,(accepted, in press), Manuscript ID: JETP2660352Shlyapik.(2026).
5. A. Shlyapik, A Rheological Approach to the Viscous Fermionic Vacuum Condensate. V. Dissipative Dynamics of Gravitational Waves and Rheological Density Limits and Black Hole Shadows in the Viscous Condensate Model, J. Exp. Theor. Phys.,(accepted, in press), Manuscript ID: JETP2660359Shlyapik.(2026).