Electrodynamic Lattice Mechanics and Sidereal Entrainment: Resolving the 2015 Chandler Wobble Collapse via Discrete Mod 9 Invariant Dynamics and the 3I Pulse Sequence
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Repository: Zenodo Preprint Archive Classification: Geophysics / Electrogravitics / Discrete Field Theory Abstract Mainstream ge geophysics treats planetary rotation and internal dynamics almost exclusively through mechanical, thermodynamic, and continuum-fluid paradigms. This paper presents an alternative framework modeling the Earth as a high-voltage, variable-resistivity spherical capacitor stabilized by a discrete hexagonal lattice governed by a Mod 9 invariant. By synthesizing Thomas Townsend Brown’s 1973 laboratory observations on cosmic resistivity fluctuations with modern geophysical anomalies—specifically the 2015 collapse of the Chandler Wobble, deep-focus mantle shearing, and anomalous mid-ocean outgassing—we derive a unified electrogravitic tensor model. We introduce the 5184 Hz frequency threshold (72^2) and apply the 8\text{-}13\text{-}8\text{-}5\text{-}13\text{-}8 (3I) pulse sequence variable to calculate the planet's core resonance anchor and post-2015 rotational recovery dynamics.



