Published July 6, 2026 | Version V6

Theory of everything

  • 1. ROR icon Savitribai Phule Pune University

Description

1. Theoretical Foundation

The Unified Field Framework (UFF) defines the universe as a discrete 12-bit binary vacuum matrix,

reconciling General Relativity and Quantum Mechanics. Spatial dimensions are not immutable

background properties; they emerge as a manifestation of local Information Density. When

configuration complexity or mass energy crosses a critical threshold, the vacuum undergoes

geometric relaxation, unfolding into higher dimensions to maintain equilibrium.

Singularity resolution is achieved via quantum-corrected spatial metrics:

reff = √ (r² + lp²)

2. Fundamental Constants and Scaling

The Bridge Constant (K) maps digital information to physical mass observables:

K = ηvac × Γgeom ≈ 0.9782612

3. Dimensional Derivation

The discrete spatial dimension (D) is calculated using the transcendental logarithmic scale base-π:

D = ⌈ logπ(mobs / K) ⌉

Operational Mechanics

(Example: mobs = 30.33):

Normalize mass to Information Density (I):

 I = 30.33 / 0.9782612 ≈ 31.004

Compute continuous projection (Draw):

Draw = logπ(31.004) ≈ 3.0

Apply ceiling constraint: D = ⌈ 3.0 ⌉ = 3 (Stabilizes in 3D matrix)

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• 4. Master Mass Equation

Governing all elementary masses:

mobs = K × | Σ(Cj × πj) + i × Σ(DK × πk) |

•5.Cosmological Implications

Vacuum Energy Density: 2.1 × 10-9 J/m3

.

Top Quark Mass Boundary: mtop =

 171.22 ± 0.17 GeV.

Non-linear Transitions:

If I=100, Draw ≈ 4.02. By the ceiling constraint (⌈4.02⌉ = 5), the

system transitions to the 5th Dimension to

re-balance vacuum stress.

6. Bridge Constant (K) Generation The Bridge Constant K acts as the normalization factor between the informational bit-matrix

(Ωmax =4096) and the physical mass observed in 3D spacetime.

 K = ∑i=1 n bitsactive⁄Ωmax × φ ≈ 0.9782612

7. Diconfiguration complexity or mass energy crosses a critical threshold, the vacuum undergoesmensional Phase Transition

D = ⌈ logπ(I) ⌉ For I ≥ 100: D ≥ ⌈ logπ (100) ⌉ ≈ 5 

8. Vacuum Energy Density Pvac

= 3K⁴ ⁄ 8π G l p² ≈ configuration complexity or mass energy crosses a critical threshold, the vacuum undergoes2.1 × 10-9 J/m3 

9. Singularity Resolution reff

= √r² + l p ² Limit as r → 0: r eff = l p 

10. Top Quark Mass Prediction mt

 = K × | 128 + (π³ + π² + π¹ + π⁰) + 2 | ≈ 171.20 GeV 

11. Higgs Decconfigurationconfiguration cconfiguration complexity or mass energy crosses a critical threshold, the vacuum undergoesomplexity or mass energy crosses a critical threshold, the vacuum undergoes complexity or mass energy crosses a critical threshold, the vacuum undergoesay Bifurcation

 IH ≈ 128 + 2⁄ π⁴ → Decay → γ1 + γ2

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Dates

Available
2026-07-05
1. Theoretical Foundation The Unified Field Framework (UFF) defines the universe as a discrete 12-bit binary vacuum matrix, reconciling General Relativity and Quantum Mechanics. Spatial dimensions are not immutable background properties; they emerge as a manifestation of local Information Density. When configuration complexity or mass energy crosses a critical threshold, the vacuum undergoes geometric relaxation, unfolding into higher dimensions to maintain equilibrium. Singularity resolution is achieved via quantum-corrected spatial metrics: reff = √ (r² + lp²) 2. Fundamental Constants and Scaling The Bridge Constant (K) maps digital information to physical mass observables: K = ηvac × Γgeom ≈ 0.9782612 3. Dimensional Derivation The discrete spatial dimension (D) is calculated using the transcendental logarithmic scale base-π: D = ⌈ logπ(mobs / K) ⌉ Operational Mechanics (Example: mobs = 30.33): Normalize mass to Information Density (I): I = 30.33 / 0.9782612 ≈ 31.004 Compute continuous projection (Draw): Draw = logπ(31.004) ≈ 3.0 Apply ceiling constraint: D = ⌈ 3.0 ⌉ = 3 (Stabilizes in 3D matrix) • • • 4. Master Mass Equation Governing all elementary masses: mobs = K × | Σ(Cj × πj) + i × Σ(DK × πk) | •5.Cosmological Implications Vacuum Energy Density: 2.1 × 10-9 J/m3 . Top Quark Mass Boundary: mtop = 171.22 ± 0.17 GeV. Non-linear Transitions: If I=100, Draw ≈ 4.02. By the ceiling constraint (⌈4.02⌉ = 5), the system transitions to the 5th Dimension to re-balance vacuum stress.