Эта статья является препринтом и не была отрецензирована.
О результатах, изложенных в препринтах, не следует сообщать в СМИ как о проверенной информации.
A Rheological Approach to the Viscous Fermionic Vacuum Condensate. VI. The Hydrodynamic Nature and Scale Invariants of Gravitational Interaction
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).
6. A. Einstein, Die Grundlage der allgemeinen Relativitätstheorie, Annalen der Physik, 354(7), 769–822 (1916).
7. Y. B. Zeldovich, The Equation of State of Ultra-Dense Matter and Its Relativistic Limitations, J. Exp. Theor. Phys. (Zh. Eksp. Teor. Fiz.), Vol. 41, pp. 1609–1615. (1961) — Constitutive For mulation for the Ultimate Elasticity Limit of an Ultra-Dense Monolith (P = ρ · c^2).
8. H. B. G. Casimir, On the attraction between two perfectly conducting plates, Proc. Kon. Ned. Akad. Wetensch., 51, 793–795 (1948).
9. R. Coldea, D. A. Tennant, E. M. Wheeler, E. Wawrzynska, D. Prabhakaran, M. Telling, K. Habicht, P. Smeibidl, K. Kiefer, Quantum Criticality in an Ising Chain: Experimental Evidence for Emergent E8 Symmetry, Science, 327 (5962), 177–180 (2010).
10. P. J. Mohr, B. N. Taylor, CODATA recommended values oft he fundamental physical constants: 1998, Reviews of Modern Physics, 72(2), 351–495 (2000).
11. E. Tiesinga, P. J. Mohr, D. B. Newell, B. N. Taylor, CODATA recommended values of the fundamental physical constants: 2018, Reviews of Modern Physics, 93(2), 025010 (2021).
12. T. Quinn, H. Parks, C. Speake, R. Davis, Improved determination of the gravitational constant G using a torsion balance, Physical Review Letters, 111(10), 101102 (2013).
13. G. E. Volovik, The Universe in a Helium Droplet, Oxford University Press, Oxford (2003).
14. L. D. Landau, E. M. Lifshitz, Fluid Mechanics: Volume 6 (Course of Theoretical Physics), Pergamon Press, Oxford (1987).