A Framework for Cosmological Reciprocity: Mathematical Derivations and Physical Implications of the Davinus-Sunivad Constant
Rattachement africain : Kenya. Niveau de preuve : code pays fourni par la source.
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This paper establishes the macroeconomic and astrophysical extensions of the Theory of Oppositional Resonance and Experiential Duality (TORED) by scaling the framework to macro-astrophysics and general relativity. We formalize the physical mechanics of the Davinus-Rosen Information Transfer model, defining a dual-universe system comprised of a matter-dominated forward-temporal domain ($\mathcal{M}_+$) and an antimatter-dominated reverse-temporal domain ($\mathcal{M}_-$). We derive the precise conditions under which inter-universal wormhole throats are permanently stabilized via an exact cancellation of black hole gravity and white hole anti-gravity. Employing transcendental differential equations solved via the Lambert W function, we mathematically demonstrate how mass-energy flux is regulated across spacetime boundaries by the Davinus-Sunivad Constant ($\mathcal{D}_S \equiv 1$). This framework successfully resolves the physical singularity problem by demonstrating that collapsing matter avoids infinite density, instead transiting to the opposing domain as localized dust. This provides a native explanation for the distribution of trace cosmic antimatter dust observed within localized universal voids.
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