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Published June 2, 2025 | Version v1.4
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Definor String Theory - A Derivation of G

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Definor String Theory – A Derivation of G :

This version represents the final release of this introductory work, excerpted from a forthcoming book on Definor String Theory. It introduces a new geometric framework that unifies gravity, quantum mechanics, and electromagnetism using dimensional harmonics and a real-valued, spinor-like formalism.
The theory eliminates the need for extra dimensions by modeling particles as co-defining resonant strings within a 3D spherical phase space. Using only Planck’s constant, the speed of light, and the vacuum impedance—without free parameters—it derives the electron and proton masses, the proton charge radius, and Newton’s gravitational constant.
Gravity emerges here as a quantum inductive phase-matching interaction in definor space. All derived constants match, or in some cases exceed, current experimental precision. This model offers novel contributions to both General Relativity and string theory, grounded in real-valued ontological dynamics and dimensional stiffness.
Version 1.4 incorporates clarifications requested by readers, including: Explicit dimensional analysis in the derivation of G, discussion of matter/antimatter asymmetries and their influence on gravitational behavior and an introduction to universal locality.

Future chapters of the full book will be released in serialized form. Likely in the following order:
Preface
1 Introduction 
2 The Ontology
3 The 1D String
4 Definor Space
5 Fundamental Particles
6 Electrodynamics
7 The Hydrogen Spectrum 
8 Matter-Antimatter and The Photon
9 The Neutron
10 Complete Special Relativity and Cosmology
11 Kinetic Energy and Quantum Mechanics
12 Gravity
13 Speculations and Implications
 
The many thoughtful comments and questions are deeply appreciated—as is the extraordinary level of interest shown.
Comments are welcome at: simon@simonraab.com

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Copyrighted
2025-05-15
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