The Muon's Anomaly: Dirac's g = 2 Forced, and the Anomalous Moment Scaling as the Lepton Mass-Squared
Maria Smith · Zenodo (CERN European Organization for Nuclear Research) · 2026
One axiom. One operation. Zero free parameters. The muon’s magnetic moment has sat in tension with the Standard Model for years — the famous g−2 anomaly. This paper supplies two forced structural facts. First, the bare gyromagnetic ratio is exactly g = 2, forced from the fold’s Dirac structure (the half-One coupling, g⁻¹ = 1/2). Second, the anomalous excess scales as the lepton mass-squared ratio: the muon, ~207 times heavier than the electron, has an anomalous contribution enhanced by (mμ/m_e)² ≈ 42,750 — which is why the tension shows in the muon, not the electron. The electron and muon anomalies are therefore not independent; they are locked by the forced mass ratio. Machine-checked; reproduces from one command. A standalone result within the Smithian Fold Theory of Everything (SFTOE). Full corpus, code, and the run-it-yourself VERIFY.md protocol: https://github.com/MettaMazza/Smithian-Fold-Theory