Kinetic Interpretation of Magnetism and Bifurcation of Gravitational Waves in Substratum Hydrodynamics: Geometric Asymmetry and Wave Speed Differentiation

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Autore principale: Mchedlishvili, Vakhtang
Natura: Recurso digital
Lingua:inglese
Pubblicazione: Zenodo 2026
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author Mchedlishvili, Vakhtang
author_facet Mchedlishvili, Vakhtang
contents <p>This paper reinterprets the mechanisms of magnetic induction and gravitational interaction propagation within the framework of Substratum Hydrodynamics (Papers I-XV). We argue that magnetism is the rotational component of Substratum flow (curl v), induced by the geometric irrationality and ellipsoidal compression of natural bodies. Simultaneously, the paper resolves the contradiction between the speed of gravitational waves detected by LIGO (c) and the superluminal speed (Vg ≈ 10¹⁰ c) required for celestial mechanical stability. We demonstrate that LIGO signals represent "surface" (transverse) oscillations of the Substratum, limited by c, while the fundamental gravitational potential propagates as a "structural" (longitudinal) pressure wave. This bifurcation reconciles General Relativity with Laplacian mechanics.</p>
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id zenodo_https___doi_org_10_5281_zenodo_18327807
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language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle Kinetic Interpretation of Magnetism and Bifurcation of Gravitational Waves in Substratum Hydrodynamics: Geometric Asymmetry and Wave Speed Differentiation
Mchedlishvili, Vakhtang
Magnetism
Substratum curl
Gravitational waves
LIGO
Laplace aberration
Wave bifurcation
Longitudinal waves
<p>This paper reinterprets the mechanisms of magnetic induction and gravitational interaction propagation within the framework of Substratum Hydrodynamics (Papers I-XV). We argue that magnetism is the rotational component of Substratum flow (curl v), induced by the geometric irrationality and ellipsoidal compression of natural bodies. Simultaneously, the paper resolves the contradiction between the speed of gravitational waves detected by LIGO (c) and the superluminal speed (Vg ≈ 10¹⁰ c) required for celestial mechanical stability. We demonstrate that LIGO signals represent "surface" (transverse) oscillations of the Substratum, limited by c, while the fundamental gravitational potential propagates as a "structural" (longitudinal) pressure wave. This bifurcation reconciles General Relativity with Laplacian mechanics.</p>
title Kinetic Interpretation of Magnetism and Bifurcation of Gravitational Waves in Substratum Hydrodynamics: Geometric Asymmetry and Wave Speed Differentiation
topic Magnetism
Substratum curl
Gravitational waves
LIGO
Laplace aberration
Wave bifurcation
Longitudinal waves
url https://doi.org/10.5281/zenodo.18327807