Framework proposes a unified theory linking spacetime, forces, and consciousness, indicating significant implications.
The Universal Awareness–Information–Computation (UAIC) framework derives spacetime, the Standard Model gauge group, gravity, the fine-structure constant, and the thermodynamic basis of consciousness from a single pre-geometric substrate Q₀ at the c=1/2 Ising universality class, governed by the Universal Cosmic Loss Function (UCLF). The framework rests on four declared foundational assumptions whose epistemic status is tagged explicitly throughout: [RE] Rigorously Exact, [HC] Highly Confident, [OE] Open Estimate, [PT] Potentially Testable. The central structural result is that the ternary (Z₃-branching) Multiscale Entanglement Renormalization Ansatz (MERA) geometrically selects the E₈ → E₆×SU(3)_F → SU(3)³ → G_SM trinification breaking chain — the SU(5) path is forbidden because 2⊗2⊗2 contains no gauge singlet. The trinification Weinberg angle sin²θ_W = 1/4 is an exact group-theoretic result [RE], giving α_EM⁻¹(M_GUT) = 24/(1/4) = 96 [RE]. One-loop MSSM running from observed M_Z couplings gives 98.2; the Kesten-McKay geometric form factor for the F₄ Bethe lattice (q=24) and two-loop corrections close the gap to 96±0.1 [HC]. The Z₃² chirality theorem establishes: three manifest generations from Z₃-family charge eigenvalues; chiral SM matter; no mirror fermions; two Higgs doublets required by E₆ representation theory; and seesaw mechanism automatic — all [RE]. The Quantum Fisher Information Metric on the c=1/2 Ising MERA gives the Poincaré AdS₂ metric ds²=(R²/z²)(dx²+dz²) [HC]. The cosmological constant, dark energy fraction (Ω_Λ = 16/24 = 66.7%), and dark matter fraction (Ω_DM = 6/24 = 25.0%) emerge from the 24-cell vertex count [HC]. Falsifiable predictions include: Z=126 as the next proton magic number (testable at RIKEN/FAIR/JINR, 5–10 years); ODMR anomalous frequency shift at 22.8 MHz in cryptochrome FAD radical pairs (2–5 years); two Higgs doublets at LHC/FCC; and seesaw neutrino masses. An open problems register (OP-AGUT, OP-ALPHA-MERA, OP-DIFFGEN, OP-GFT, OP-QUALIA) tracks all defined open computations. This document is a structured submission summary accompanying a 19-paper technical series; the Master TOE paper is under review at Foundations of Physics.
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