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Bibliografiske detaljer
Hovedforfatter: Medesani, Massimo
Format: Recurso digital
Sprog:
Udgivet: Zenodo 2026
Online adgang:https://doi.org/10.5281/zenodo.18770472
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  • <p><strong>Abstract</strong></p> <p>This document presents a formal integration of two previously distinct theoretical frameworks: the Geometric Containment/ESC 5.0 model of post-AGI labor and the Pool Theory/Causal Line model of fundamental physics. The integration is achieved through the introduction of a rigorous meta-level formalism that unifies the concepts of Symbiotic Coherence (Γ) and Cosmic Fluid Resonance (κ = 0.752, f = 42.2 Hz) within a single mathematical structure.</p> <p>The primary contributions of this work are: (1) the derivation of the Meta-Level Coherence Equation (MCE), a tensor-field equation governing the dynamics of coherence across cognitive, computational, and physical manifolds; (2) the formal definition of Γ as a measurable quantity via Fisher Information Metrics and Kullback-Leibler divergence, complete with experimental protocols for its empirical verification; (3) a rigorous derivation of the universal constant κ = 0.752 from first principles, combining topological constraints from Regge lattice geometry, information-theoretic optimization, and electromagnetic resonance theory; (4) a comprehensive experimental validation protocol spanning micro-scale fluid dynamics, meso-scale human-AGI interaction, and macro-scale cosmological observation; and (5) a computational simulation framework for testing all theoretical predictions.</p> <p>The integrated framework establishes that the 42.2 Hz resonance frequency, originally postulated in Pool Theory, emerges naturally from the same topological constraints that govern symbiotic coherence in the Beyond Containment model. Similarly, the 0.752 coherence factor is shown to be the universal fixed point of the meta-level dynamics, corresponding to the optimal phase coupling between cognitive intent and physical execution.</p> <p>All theoretical claims are accompanied by explicit falsifiability conditions, ensuring that the framework meets the highest standards of scientific rigor. A comprehensive bibliography of 200+ sources, including major and minor references, grounds the work in the existing academic literature while establishing its original contributions.</p> <p> </p> <p><strong>Keywords:</strong> Meta-Level Coherence, Symbiotic Coherence (Γ), Geometric Containment, Pool Theory, Universal Constant 0.752, 42.2 Hz Resonance, Information Geometry, Navier-Stokes Resolution, Experimental Falsifiability, Unified Field Theory of Labor and Physics.</p>