Material Substrate Asymmetry, Centrifugal Hydrometry, and Ion Bombardment Kinetics within a Discrete Hexagonal Lattice Framework
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Repository Target: Zenodo Open Science Repository Classification: Theoretical Physics / Gravitic Field Mechanics Abstract This paper formalizes the integration of T. Townsend Brown’s historical experimental notes regarding material substrate asymmetries into our established discrete hexagonal lattice framework governed by a \text{Mod } 9 structural invariant. By evaluating mass-inertial anomalies across specific elemental blocks—principally aluminum silicates and lanthanide rare earths—we derive precise operational parameters for material phase locking, centrifugal hydrometry beneficiation, and dual-configuration ion bombardment cells. The mathematical derivations connect system constants (\alpha = 819, \beta = 984, and the boundary threshold 72^2 = 5184) directly to empirical observations of thermal evolution, mass attenuation curves, and temporal relaxation windows.



