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July 4, 20260 citationsOpen Access

Unified field theory 3.0

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ASAkil Akbar Sayyad Akil Akbar SayyadSavitribai Phule Pune University

Key Points

  • The research aims to unify General Relativity and Quantum Mechanics through a comprehensive mathematical framework.
  • Developed the Unified Field Framework (UFF) 3.0 combining GR and QM.
  • Defined vacuum as a 12-bit binary information system.
  • Calculated 26 Standard Model parameters with 0.1% empirical error.
  • Derivation of 26 parameters with a 0.1% empirical error.
  • Established the effective geometric regulator approximately 0.9985.
  • Highlighted a minimal Planck-scale volume (Vmin) of approximately 1.77 x 10^-104 m³.

Abstract

The Unified Field Framework (UFF) 3.0 presents a complete mathematical synthesis unifying General Relativity (GR) and Quantum Mechanics (QM). By replacing point singularities with a minimal Planck-scale volume (Vmin ≈ 1.77 x 10-104 m³) and defining the vacuum as a discrete 12-bit binary information system, we derive the 26 Standard Model parameters with 0.1% empirical error. UFF 3.0: Geometric Regulator (Γgeom) Calculation: 1. Efficiency Component (ηcutoff)The vacuum capacity is modeled as a 12-bit binary information system:ηcutoff = (1 - 1/2¹²) = 1 - 0.00024414 = 0.99975586 ≈ 0.9997562. Correction Component (Γreg)The geometric correction at the foundational physical level is derived using division to ensure propernormalization:Γreg = (1 - αQG / π³) Γreg = (1 - 0.001258 / 31.006277) ≈ 0.9987413. Final Result (Γgeom)The effective geometric regulator (Γgeom) is the product of these components:Γgeom = ηcutoff × Γreg Γgeom = 0.999756 × 0.998741 ≈ 0.998497 Γgeom ≈ 0.9985

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Cite This Study

Akil Akbar Sayyad Akil Akbar Sayyad (2026) studied this question.

synapsesocial.com/papers/6a48a65789561a0c2d78e8a0https://doi.org/10.5281/zenodo.21121363
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