Abstract: This technical prospectus details a verified mechanical resolution to vacuum energy density discrepancies and the Muon g-2 anomaly utilizing the 16/pi Kish Lattice modulus. The blueprint outlines a three-phase industrial rollout designed to stabilize planetary frequency drift (the 441k-year "Snap") while transitioning to a Kardashev Type 1 energy economy. Technical Scope and Configurations: Phase 1 (Laboratory): Verification protocols for the "Lattice Snap" using a benchtop vacuum resonator tuned to 1.618 MHz. Includes 5-Sigma discovery metrics and Mu-metal/Faraday isolation requirements. Phase 2 (Industrial Pilot): Engineering specifications for a subterranean resonant anchor situated in the Galena-Platteville Dolomite carbonate sequence (Northern Illinois). This phase focuses on geological coupling and piezoelectric buffering. Phase 3 (Atmospheric): Deployment of the "Floating Resonant Sieve"—a buoyant, tethered platform designed for high-altitude C14-to-C60 resonant precipitation and carbon sequestration. Access Restriction Notice: The full content of this document is under Restricted Access to protect proprietary Intellectual Property and trade secrets. This DOI serves as a permanent, legally-timestamped record of the 16/pi derivations and associated engineering blueprints. Access for institutional review (UIC, Fermilab, or Argonne National Laboratory) is granted solely upon the execution of a formal Non-Disclosure Agreement (NDA).
Kish et al. (Mon,) studied this question.