The Great Snap Framework A Unified Theory of Non-Singular Cosmogenesis and Scale- invariant Gravitational Inheritance
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This monograph introduces the Great Snap Framework (GSF), a non-singular cosmological model derived within the Einstein-Cartan-Sciama-Kibble (ECSK) extension of General Relativity. By accounting for the intrinsic angular momentum (spin) of fermionic matter at extreme densities, the GSF resolves the fundamental Big Bang singularity through a torsional rebound mechanism. Key Contributions: The Scale-Invariant Gravitational Inheritance Law (n=1/2): A scaling relationship positing that a daughter universe inherits physical constants and vacuum energy density from its parent black hole’s event horizon parameters. Resolution of the Hubble Tension: Provides a first-principles alignment for the H0 discrepancy observed in 2026 data (5.1σ) through modified expansion history. JADES-ID1 Anomaly: Explains the existence of mature, massive galaxies at z>14 through "Inherited Initial Conditions" that accelerate early structure formation. Archive Note: This work is also archived on rxiVerse (Archive ID: 2603.0037).



