PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
March 8, 20260 citationsOpen Access

Myo Min Aung Unified Theory (MUT) v7.4: The Origin of Mass - From Planck Scale to Protons (Supplementary Material to v7.0)

View Full Paper
MAMyomin Aung

Key Points

  • The central aim is to investigate the origins of mass through the Universal Mass Curvature Rate and its relation to spacetime.
  • Analyzed nuclear mass data from the AME2020 database covering 2,545 isotopes.
  • Calculated the Universal Mass Curvature Rate (f_MCR) using the formula involving nucleon count and nuclear mass.
  • Explored the relationship between the Planck scale and baryonic mass.
  • f_MCR converges to approximately 1.792 × 10^35 m/(kg·s) with small deviations due to nuclear interactions.
  • Proton mass relates to Planck-scale mass, suggesting a significant hierarchy between gravitational and nuclear interaction scales.
  • Nuclear binding energy is viewed as a geometrical effect of spacetime rather than a separate interaction.

Abstract

Myo Min Aung Unified Theory (MUT) v7. 4 investigates the origin of mass through the concept of the Universal Mass Curvature Rate (fMCR). While Einstein’s relation E = mc² establishes the equivalence between mass and energy, it does not explain the physical origin of mass itself. MUT v7. 4 proposes that mass emerges from spacetime resonance characterized by the relation: fMCR = c × n / mwhere c is the speed of light, n is the nucleon count, and m is the actual measured nuclear mass. Using nuclear mass data from the AME2020 database covering 2, 545 isotopes, the study shows that fMCR converges to a nearly constant value of approximately: fMCR ≈ 1. 792 × 10³5 m/ (kg·s) with small deviations (~0. 2%) corresponding to nuclear binding energy and shell effects. Within this framework, nuclear binding energy is interpreted as a geometrical resonance effect of spacetime curvature rather than an independent interaction term. The theory also introduces a connection between the Planck scale and baryonic mass. The proton mass can be expressed as a Planck-scale quantity suppressed by a factor of approximately: mₚ / MPlanck ≈ 7. 68 × 10^-20This relationship provides a possible explanation for the hierarchy between gravitational and nuclear interaction scales. The work proposes fMCR as a new fundamental constant linking spacetime geometry, nuclear structure, and Planck-scale physics. MUT v7. 4 serves as supplementary material to MUT v7. 0 and expands the conceptual framework explaining the emergence of mass from spacetime resonance.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Myomin Aung (2026) studied this question.

synapsesocial.com/papers/69ada90bbc08abd80d5bc656https://doi.org/10.5281/zenodo.18899645
Ask AI
Helpful
Bookmark
Share
View Full Paper