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February 21, 20260 citationsOpen Access

MUT 6.4: Comprehensive Predictive Isotope Mass Framework via Mass Curvature Rate (MCR)

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MAMyomin Aung

Key Points

  • This research aims to create a unified framework for predicting isotope masses using the Mass Curvature Rate.
  • Consolidated previous findings from MUT theory into a single framework.
  • Utilized the Mass Curvature Rate for mass predictions.
  • Developed a master equation for calculation.
  • Standardized mass number notation.
  • Accurate predictions of known isotopes were achieved.
  • Testable predictions for unknown isotopes were proposed.
  • Presented a sample predictive isotope mass table.

Abstract

MUT 6.4 consolidates previous MUT theory findings into a single, unified framework for predictive isotope masses. Using the Mass Curvature Rate (MCR) fmcr ≈ 1.792 × 10³⁵ m/(kg·s) and the resonance stability factor ϕ(n, Z) derived from nuclear binding energy, the framework allows for accurate predictions of known isotopes and testable predictions of unknown isotopes. The notation standardizes mass number as n, replacing A from earlier versions. This version builds upon MUT 6.0 (https://zenodo.org/records/18688616�), providing a fully consistent master equation M = c n ϕ/fmcr and a sample predictive isotope mass table.

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Cite This Study

Myomin Aung (2026) studied this question.

synapsesocial.com/papers/69994cb3873532290d0216efhttps://doi.org/10.5281/zenodo.18690181
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