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The Predictions of Temporal Congestion Mechanics

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Zenodo2026-09-20 更新2026-10-01 收录
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Temporal Congestion Mechanics (TCM) describes the universe as a single physical medium. Space is a fabric carrying a congestion magnitude, a phase, and a transverse-traceless strain, governed by one three-term action. From that one action — four posits at the starting point (the three action terms and the closure that they are the fabric's action entire), ten anchored inputs of which eight are independent, and five calibrated figures — follow gravitation, galactic dynamics, cosmology, the matter spectrum, and the quantum, with no dark-matter particle, no dark-energy substance, no inflaton, and no singularity. The field normalisation is a convention, and the readout — how the medium becomes measured time and length — is derived from the fabric's own equations rather than posited. This paper is the predictions register: the framework's forecasts stated apart from their derivations. It reproduces the master paper's 219 numbered catalogue predictions — ten of them withdrawn or superseded, kept at the end with their reasons so the record stays complete — and adds 11 headline results the master derives and confronts in its sector bodies without numbering, for 212 live entries. They run as one continuous sequence ordered by weight, the results new to physics or largest for the framework first, incremental ones last. Each entry carries the master's own status tag under a strict admission discipline — every equation classed derived, measured, calibrated, definition, or posit — and, where a measurement has already met it, its confirmation and grade. None of the loaded tests carries an adjustable parameter: every number is fixed in advance. Five headline predictions 1. The Ward Constant — one velocity scale for every galaxy. v∞ = c²/√(2π G λ) ≈ 149.7 km/s is a universal asymptotic galactic velocity, with the slope-4 baryonic Tully–Fisher relation Vflat⁴ = G · Mbar · g₀ derived exactly from the action rather than fitted. Confirmed across 175 SPARC galaxies at p < 4 × 10⁻⁴¹, with a mass-to-light-independent audit at p = 3.7 × 10⁻⁷ — and no dark halo. 2. Five clusters, no dials. The Bullet Cluster, Abell 1689, El Gordo, MACS J0717.5+3745 and Abell 1835 are all matched within a ratio of 0.71–0.92 across a factor 3.7 in mass, four morphologies, and z = 0.18–0.87, with no parameter adjustment. 3. Dark energy as a derived coefficient. The cosmic drive is Friedmann-form with every term derived: the matter fraction Ωm = 1/3 and the constant term ΩΛ = 2/3 are one partition of the medium's store, not two fitted shares — what the rival picture calls dark energy is here the store's drain floor at two-thirds of capacity. The supernova magnitude–redshift record is met, and H₀ = 73.0 km/s/Mpc is read back as the capacity identity of the anchored potential rather than tuned. 4. Gravitational-wave decay from the medium itself. The binary-pulsar orbital decay is derived on the strain channel, Ps = (G/5c⁵)⟨Q⃛ᵢⱼ Q⃛ᵢⱼ⟩, with no adjustable constant anywhere in the chain, and matched on two binaries; the two tensor polarisations propagate at exactly c, making the multi-messenger speed equality an identity rather than a coincidence. 5. The hydrogen spectrum and the particle masses from topology. From the phase-current vertex alone the Bohr radius and the Rydberg energy land at 13.606 eV to five significant figures with no atomic postulate added; particles are topological windings of the one phase, their masses a catalogue on an integer lattice, and the primordial helium and deuterium abundances follow from the winding ledger alone. Ordering, provenance, retirement grounds, and a concordance to the master's numbering are given in the appendices. Each prediction states what a disagreeing measurement would refute — the equation, the coefficient, or the posit — and three of the sharpest are absolute: a single confirmed antimatter domain, primordial isocurvature signal, or primordial non-Gaussianity beyond the derived level refutes the origin account outright.

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2026-08-21
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