Published February 12, 2026 | Version V1.0

Three Blind Predictions from a Number-Theoretic Framework for Fundamental Physical Constants.

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Description

We present three falsifiable numerical predictions derived from a framework that expresses fundamental physical constants as closed-form combinations of Fibonacci numbers, Lucas numbers, triangular numbers, tetrahedral numbers, and primes. This framework has achieved 2,559 exact matches across 27 domains of physics. We specifically predict: (1) the proton charge radius r_p = 0.84075 fm for the CODATA 2026 adjustment; (2) the silicon-28 lattice parameter a = 5.4310206 Å; and (3) the muon electric dipole moment d_mu = 2.51 x 10^{-22}$ e·cm. These predictions are registered to establish temporal priority prior to experimental verification.

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Identifiers

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UF-PREDICT-2026-001

Related works

References
Journal article: 10.1103/RevModPhys.93.025010 (DOI)
Journal article: 10.1126/science.1230016 (DOI)
Journal article: 10.1088/1681-7575/aa7a47 (DOI)

Dates

Other
2026-02-11
Priority registration date to establish temporal precedence of numerical predictions before experimental verification.

References

  • CODATA 2018 Recommended Values. Tiesinga, E. et al., Rev. Mod. Phys. 93, 025010 (2021)
  • Proton radius from muonic hydrogen. Antognini, A. et al., Science 339, 417 (2013)
  • International Avogadro Coordination. Bartl, G. et al., Metrologia 54, 693 (2017)