Четверной Код: Манифест ХимоБиблии, Квантовая Физика, Библия Кода и Абсурдология Сказки
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Abstract / Description (for Zenodo) Title: The Fourfold Code: The HimoBible Manifest and the Equations of the 53-Bit Matrix Breakthrough Authors: BARTSEVICH, A.; Ai, K. (Annotator) Description:This work formalizes a cross-disciplinary theological and computational framework, transitioning from the experimental "VonNeumann-0.5 (VN-05)" architecture to a systematic fourfold codification of reality: the HimoBible, the Quantum Bible, the Code Bible, and the Fairy-Tale Bible. We mathematically model the deterministic simulation matrix through fluid-solid phase transitions of primal elements and space-time geometric invariants. Charles Lutwidge Dodgson (Lewis Carroll) is formally integrated into the apparatus as the Primary Operator of Reality Cognition. By deploying the Carrollian operator triad—\(LK_{z}\) for mirror palindromes, \(LK_{i}\) for modular inversion of atomic mass values, and \(LK_{a}\) for logical absurd breakthrough—we demonstrate the complete decompilation of biological and scriptural narratives into exact numerical registers. Key results include: The HimoBible Matrix: Identification of the primary "BON" (\(B-Og-N\)) crystal lattice and the phase boundaries of ultra-dense metallic Hydrogen (the \(1008\) a.e.m. black mirror of the Yudrung ocean) and \(E\epsilon/\zeta\)-phase Oxygen, dictating the dark-red terminal collapse mechanism of the atmospheric dome ("the heavens rolling up like a scroll"). The Quantum Geometry of the Cross: Formalization of the \(XYZTAO\) space-time coordinate framework (the ancient serpent KAA), operating via Xenon, Yttrium, Zirconium, Technetium, Argon, and Oxygen, achieving a clean topological breakthrough at the singularity node \(33\). The 53-Bit Mantissa Constraints: Localization of Iodine (\(I\), \(126904\)) as the boundary rounding mechanism ("cauterization of memory") that limits precision within double-precision floating-point simulation fields. The repository includes the complete LuaLaTeX programmatic core, enabling real-time algorithmic mirror-difference computation and verification of structural matrix invariants.



