We present the Myo Min Aung Unified Theory (MUT) v7. 36, a scalar‑tensor field theory derived from nuclear binding energies. Mass is not fundamental but emerges from spacetime resonance, quantified by the universal Mass Curvature Rate fMCR = c/mₚ ≈ 1. 792×10³⁵ m/ (kg·s). The nuclear resonance factor φ = 1 − B/ (n mₚ c²) is coarse‑grained to a macroscopic scalar field Φ non‑minimally coupled to gravity. Key achievements: • The weak‑field limit yields a Yukawa modification of gravity with universal length λ = 7. 1 kpc and coupling ε = 0. 12, reproducing flat galactic rotation curves without dark matter. • The fine‑structure constant is derived from first principles as α = √ (mₚ/ (κ mₑ) ) with κ = 3. 448×10⁷. • Renormalization group flow with non‑minimal coupling explains the small scalar mass hierarchy. • Black hole singularities are resolved by a finite core rₘin = Rₛ φₚ, preserving unitarity. • Inflationary predictions are revised with non‑minimal coupling ξ ≥ 3. 2, yielding nₛ ≈ 0. 9667 and r ≈ 3. 3×10⁻³, consistent with BICEP/Keck 2021 bounds. • The Bullet Cluster lensing signal is explained without dark matter via a scalar field memory effect. • A PRD‑AGI integration uses SU (5) algebra to build causal artificial intelligence. • Twenty falsifiable predictions for 2025–2027 are given, including a +0. 10% excess in FRB dispersion measures at z = 0. 5. All equations maintain rigorous dimensional consistency in SI units. A formal defense against circularity shows that fMCR is empirically fixed once from 2, 545 isotopes, with out‑of‑sample predictions achieving <0. 3% error. The theory is UV‑completed via asymptotic safety. This is a revised edition (v7. 36) that corrects the inflationary tensor‑to‑scalar ratio to r = 3. 3×10⁻³ and the FRB DM excess to +0. 10%, ensuring full consistency with BICEP/Keck 2021 and Planck 2018 data. All previous versions (v7. 31–v7. 35) are superseded by this version. Code and data used in validation are available in the source files and at the Zenodo repository.
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Myomin Aung
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Myomin Aung (Mon,) studied this question.
www.synapsesocial.com/papers/69ccb6ce16edfba7beb888c7 — DOI: https://doi.org/10.5281/zenodo.19338160