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Auteur principal: Muslihat, Luthfi
Format: Recurso digital
Langue:anglais
Publié: Zenodo 2025
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Accès en ligne:https://doi.org/10.5281/zenodo.18075595
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author Muslihat, Luthfi
author_facet Muslihat, Luthfi
contents <p>We present the metrological validation of the Morphic Geometric Harmony (Morphic-GH) Ledger, a comprehensive database documenting 14,632 unique isotopic configurations within the 52.71 Gyr saturated continuum. By identifying the Unity Boson (χ17 ≈ 17.07 MeV) as the fundamental unit of substrate displacement, we demonstrate that isotopic stability is a deterministic function of integer-locked harmonics (n) and the dimensionless stress tensor δ. A spectral resonance audit reveals a dominant structural attractor at δ = 0.2300, which we identify as the Substrate Inertia Node. We demonstrate that this node is a scale-invariant derivative of the cosmological matter density (Ωm ≈ 0.315). The clustering of stable isotopes at specific "Sweet Spots" achieves a statistical significance of > 5σ, identifying the periodic table as a digital transcript of vacuum yield stress.</p>
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spellingShingle Metrological Validation of the Morphic-GH Ledger: A Statistical Audit of 14,632 Isotopic Configurations
Muslihat, Luthfi
Morphic-Medium Standard Model
Nuclear Isomers
Proton Mass Derivation
X17 Anomaly
Glueball f0(1710)
Substrate Metrology
Isotopic Stability
<p>We present the metrological validation of the Morphic Geometric Harmony (Morphic-GH) Ledger, a comprehensive database documenting 14,632 unique isotopic configurations within the 52.71 Gyr saturated continuum. By identifying the Unity Boson (χ17 ≈ 17.07 MeV) as the fundamental unit of substrate displacement, we demonstrate that isotopic stability is a deterministic function of integer-locked harmonics (n) and the dimensionless stress tensor δ. A spectral resonance audit reveals a dominant structural attractor at δ = 0.2300, which we identify as the Substrate Inertia Node. We demonstrate that this node is a scale-invariant derivative of the cosmological matter density (Ωm ≈ 0.315). The clustering of stable isotopes at specific "Sweet Spots" achieves a statistical significance of > 5σ, identifying the periodic table as a digital transcript of vacuum yield stress.</p>
title Metrological Validation of the Morphic-GH Ledger: A Statistical Audit of 14,632 Isotopic Configurations
topic Morphic-Medium Standard Model
Nuclear Isomers
Proton Mass Derivation
X17 Anomaly
Glueball f0(1710)
Substrate Metrology
Isotopic Stability
url https://doi.org/10.5281/zenodo.18075595