Richard Measey
A Unified Physics from First Principles
One force. One topology. Open residuals listed.
Richard Measey obtained a degree in Applied Physics and over 35 years has developed a working
one-force physics programme. Articles, a numbered paper series, and engines span electrodynamics, confined-photon structure,
nuclear catalogues, and a gravity picture. The electron mass and the fine-structure constant
are inputs, not derived theorems. This is not a finished theory of everything.
Catalogue scores — not free theorems
105 hadrons mapped (0.14% mean residual, catalogue) · 118 elements computed (99.28% V4 vs AME2020) ·
Proton T(2,3) match 0.002% (not a mass theorem) · Mach G / H₀ invert is convention-conditional ·
α and me are inputs
The Framework
Applications & Extensions
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- Results — Precision results and testable predictions
- Work — Articles and a numbered paper series
- Applications — Practical uses of the framework
- Education — Learn the framework from first principles
- About — The story behind the framework
Key Topics
Weber force law · Torus knot mass formula · Confined photon model · Proton T(2,3) match ·
Trapped Coulombic energy · Mach invert (convention-conditional) · Hopf link mass formula ·
Gaussian integer lattice · Expanded torus electron · Nuclear binding engine ·
Quaternion Weber formulation · Helical photon · Electrodynamic chemistry · Electrodynamic medicine
measey.com — Search the entire framework