Empirical Validations of Myo Min Aung Unified Theory (MUT v7.27): 100 Postdiction Tests Across Nuclear, Galactic, and Cosmological Scales
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| Format: | Recurso digital |
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2026
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| _version_ | 1866901640331657216 |
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| author | Aung, Myomin |
| author_facet | Aung, Myomin |
| contents | <p dir="ltr">This technical report provides a comprehensive empirical evaluation of the <strong>Myo Min Aung Unified Theory (MUT) v7.27</strong> through 100 systematic postdiction tests. The theory operates on a minimalist framework, utilizing only two fundamental parameters: the proton-based constant f_{\mathrm{MCR}} and a single galactic length scale \lambda = 7.1\,\mathrm{kpc} derived from SPARC rotation curves.</p> <p dir="ltr"><strong>The report documents the theory’s performance across seven distinct physical domains:</strong></p> <ol> <li><strong>Nuclear Physics:</strong> Precise reproduction of atomic masses (from ^1H to $^{238}$U) and identification of magic number stability.</li> <li><strong>Atomic Constants:</strong> Consistency with the Rydberg constant, Bohr radius, and fine-structure constant.</li> <li><strong>Stellar Structure:</strong> Accurate postdiction of solar fusion efficiency, central temperature, and stellar luminosity-mass relations (L\propto M^{3.5}).</li> <li><strong>Galactic Dynamics:</strong> Successful fits for galactic rotation curves across a wide range of SPARC galaxies without invoking dark matter.</li> <li><strong>Cosmology:</strong> Derivation of \Omega_m, \Omega_b, n_s, and CMB acoustic peak positions.</li> <li><strong>Big Bang Nucleosynthesis (BBN):</strong> Prediction of primordial abundances (He, D, ^3He), while identifying the "Lithium Problem" as a remaining challenge.</li> <li><strong>Quantum Gravity:</strong> Addressing black hole singularity resolution and the information paradox.</li> </ol> <p dir="ltr">The results show an <strong>87% success rate</strong> (87 out of 100 tests) in matching observational data within uncertainties. Discrepancies regarding the Hubble tension and S_8 parameter are transparently reported, providing a clear roadmap for future theoretical refinements. This document serves as a rigorous benchmark for the predictive power of the MUT framework.</p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_19180984 |
| institution | Zenodo |
| language | eng |
| publishDate | 2026 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | Empirical Validations of Myo Min Aung Unified Theory (MUT v7.27): 100 Postdiction Tests Across Nuclear, Galactic, and Cosmological Scales Aung, Myomin Unified Theory (MUT) Postdiction Tests Nuclear Binding Energy SPARC Database Galactic Rotation Curves Modified Gravity Dark Matter Alternative Cosmological Parameters Hubble Tension Empirical Verification <p dir="ltr">This technical report provides a comprehensive empirical evaluation of the <strong>Myo Min Aung Unified Theory (MUT) v7.27</strong> through 100 systematic postdiction tests. The theory operates on a minimalist framework, utilizing only two fundamental parameters: the proton-based constant f_{\mathrm{MCR}} and a single galactic length scale \lambda = 7.1\,\mathrm{kpc} derived from SPARC rotation curves.</p> <p dir="ltr"><strong>The report documents the theory’s performance across seven distinct physical domains:</strong></p> <ol> <li><strong>Nuclear Physics:</strong> Precise reproduction of atomic masses (from ^1H to $^{238}$U) and identification of magic number stability.</li> <li><strong>Atomic Constants:</strong> Consistency with the Rydberg constant, Bohr radius, and fine-structure constant.</li> <li><strong>Stellar Structure:</strong> Accurate postdiction of solar fusion efficiency, central temperature, and stellar luminosity-mass relations (L\propto M^{3.5}).</li> <li><strong>Galactic Dynamics:</strong> Successful fits for galactic rotation curves across a wide range of SPARC galaxies without invoking dark matter.</li> <li><strong>Cosmology:</strong> Derivation of \Omega_m, \Omega_b, n_s, and CMB acoustic peak positions.</li> <li><strong>Big Bang Nucleosynthesis (BBN):</strong> Prediction of primordial abundances (He, D, ^3He), while identifying the "Lithium Problem" as a remaining challenge.</li> <li><strong>Quantum Gravity:</strong> Addressing black hole singularity resolution and the information paradox.</li> </ol> <p dir="ltr">The results show an <strong>87% success rate</strong> (87 out of 100 tests) in matching observational data within uncertainties. Discrepancies regarding the Hubble tension and S_8 parameter are transparently reported, providing a clear roadmap for future theoretical refinements. This document serves as a rigorous benchmark for the predictive power of the MUT framework.</p> |
| title | Empirical Validations of Myo Min Aung Unified Theory (MUT v7.27): 100 Postdiction Tests Across Nuclear, Galactic, and Cosmological Scales |
| topic | Unified Theory (MUT) Postdiction Tests Nuclear Binding Energy SPARC Database Galactic Rotation Curves Modified Gravity Dark Matter Alternative Cosmological Parameters Hubble Tension Empirical Verification |
| url | https://doi.org/10.5281/zenodo.19180984 |