This work presents Books 01 and 02 of CPQ (Cosmic Particle Quantization) field theory — a unified physical framework built on four axioms of a discrete elastic spacetime matrix with two degrees of freedom: shape excitation (ΔT) and volume excitation (ΔV). Book 01 derives from these axioms the fundamental constants (c, ℏ, G, α), Maxwell's equations, Einstein's field equations, special and general relativity, quantum mechanics (Schrödinger and Dirac equations), and the uncertainty principle — all as emergent properties of one medium. Book 02 extends the framework to particle physics and chemistry. Matter is identified as topological defects in the matrix, classified into exactly three stable types: propagating twist (k = 1/2, neutrino), closed loop (k = 1, charged lepton), and Borromean triad (k = 3, baryon). Seven quantitative predictions are derived without free parameters, achieving 97–99. 9% agreement with experiment: electron mass ratio ln (mP/mₑ) = 51. 75, neutrino splitting ratio r₂₁ = 0. 0303, proton-to-electron mass ratio mₚ/mₑ = 1841, proton magnetic moment μₚ/μN = 2. 79, neutron-proton mass difference Δm/mₚ = 0. 139%, and muon and tau mass ratios. The theory further derives atomic structure, molecular geometry, and the periodic law from the same axioms. Five falsifiable experimental predictions are proposed with specific effect estimates and test methods. Published in Czech (original) and English (translation). Includes structured metadata supplement.
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Andrea Porschová (Sun,) studied this question.
synapsesocial.com/papers/6994055d4e9c9e835dfd62c6 — DOI: https://doi.org/10.5281/zenodo.18652741
Andrea Porschová
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