Quantized Inertia Modification via Discrete Hexagonal Lattice Dynamics and NEMS-ELF Coupling
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Subject Categories: Quantum Physics, Theoretical Physics, Spacetime Lattice Dynamics Persistent Identifier Format: 10.5281/zenodo.[reserved] Abstract This paper presents a rigorous theoretical framework bridging Mike McCulloch’s Quantized Inertia (QI) model with a discrete hexagonal lattice spacetime architecture stabilized by a Mod 9 invariant. By analyzing the transition from large-scale circular particle accelerators (CERN, 2010) to localized Nano-Electro-Mechanical Systems (NEMS, 2014), we evaluate how extreme acceleration (a \approx 4 \times 10^{11} \text{ m/s}^2) compresses apparent Unruh wavelengths (\lambda_u) down to a tractable 1000 \text{ km} interaction window. We introduce a complete mass-modification equation incorporating Extremely Low Frequency (ELF) electromagnetic damping from Pipeline Inspection Gauges (PIGs), managed by the 3I pulse sequence (8\text{-}13\text{-}8\text{-}5\text{-}13\text{-}8) and bounded below the 5184 \text{ Hz} frequency threshold (72^2) via 7-cycle periodic breaks.



