Twenty-one abstract states claim to generate 27 particle-physics observables, including a fine-structure constant within 22 parts per million of the reference value.
A six-bit hypercube contains 64 states, and this preprint filters that space down to a 21-state operator whose transition graph is a dodecahedron. Sharad H. Bachani identifies 13 graph channels with the dimensions of the Standard Model gauge groups and derives 27 reported observables without fitted parameters. The table spans 13 orders of magnitude with a stated median error of 0.33 percent. Two new masses, 180.5 GeV and 5.17 TeV, provide prospective targets, while the other matches demand a complete audit of every algebraic choice that produced them. The idea lives or dies where a compact mathematical object meets independent calculation and particle data.
Can one 21-state operator really carry the Standard Model, or do hidden selection choices create the numerical matches? Inspect the construction and its two proposed experimental targets: