This short note presents a compact deterministic Python program that outputs four numerical values lying within the CODATA 2022 one-standard-uncertainty windows for the inverse fine-structure constant, the proton-electron mass ratio, the muon-electron mass ratio, and the tau-electron mass ratio. The program contains no empirical target values, no decimal fit coefficients, no continuous optimization variables, and no output-specific adjustable parameters. The three mass-ratio outputs are produced on a common denominator ladder, while all four outputs share a compact integer grammar. The note does not claim a physical derivation of the constants. Instead, it treats the code as a finite arithmetic object and asks a narrower information-theoretic question: if four CODATA-level numerical windows are hit by such a short shared integer program, where does the target information enter? Under a conservative unit-window normalization, the four simultaneous one-sigma hits correspond to approximately 66 bits of target-window information. The result is therefore presented as a description-length obstruction to ordinary numerical fitting: dismissal as a standard fit requires identifying the empirical input, hidden parameter, output-local coefficient, search channel, or equivalent information source that accounts for those bits. This record is intended as a compact, reproducible entry point to the broader FDC/SCR structural readout program.
T Momose (Wed,) studied this question.
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