I have written this document in April 2026 to provide rigorous mathematical responses to five constructive criticisms of my work. I address the risk of post-hoc fitting by deriving physical constants like the Weinberg angle and Koide angle directly from the Laplacian spectrum of a cuboctahedral lattice and the algebraic rank of the unitary group SU(3). I demonstrate that the doubling factor of two and the specific count of two hundred and four resonant shells are not arbitrary choices but are forced by the first-harmonic condition of standing waves and the log-ratio between the Planck length and the Hubble radius. To prove the radiative stability of the theory, I establish the existence of a spectral gap and explain how the lattice ultraviolet cutoff prevents energy from propagating away from rotating solitons. While I acknowledge that the up-quark sector remains a partial gap requiring further corrections for the charm and up masses, I suggest the top quark mass is actually defined by the electroweak vacuum expectation value rather than a standard geometric ratio. Finally, I defend the theory's adherence to Lorentz invariance by showing that the cuboctahedral lattice is isotropic at leading order and that any potential corrections are quadratic and far below current experimental detection limits.
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Anthony Bell
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Anthony Bell (Tue,) studied this question.
synapsesocial.com/papers/69d896406c1944d70ce07a0d — DOI: https://doi.org/10.5281/zenodo.19446938