Resolving Cosmological Anomalies Through Discrete Lattice Architecture, Mod 9 Invariants, and Tiered Resonance
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Abstract: Recent observations from the James Webb Space Telescope (JWST) have introduced severe anomalies into standard Lambda-CDM cosmology, most notably the existence of prematurely mature massive galaxies, compact Little Red Dots (LRDs) indicating rapid direct-collapse supermassive black holes, and the persistent Hubble tension. This paper formalizes these phenomena within a discrete hexagonal lattice architecture governed by a Mod 9 invariant, a 5184 frequency threshold (72^2), a 7-cycle periodic phase reset, and the 3I pulse sequence (8\text{-}13\text{-}8\text{-}5\text{-}13\text{-}8). By replacing continuous metric expansion and slow probabilistic accretion with discrete topological domain transitions, we resolve the "too big, too soon" crisis and unify local distance ladder metrics with early-universe cosmic microwave background (CMB) projections.



