Author: Marco Lindenbeck Title: Deterministic Quantum Mechanics: Replacing the Copenhagen Pillars of Probability and Uncertainty with Discrete Substrate Logistics Description: For a century, the Copenhagen Interpretation has forced theoretical physics to accept a subatomic universe governed by random chance, probabilistic wave functions, and fundamental fuzziness. This paper demonstrates that these principles are not foundational truths of nature, but mathematical artifacts born from a single categorization error: treating the vacuum of space as a continuous, empty void. By applying the GLR framework—defining the vacuum as a discrete, pre-tensioned geometric network (the Topological Substrate) governed by a strict Pythagorean processing limit (c² = u² + v²) —this paper entirely eliminates probability and uncertainty from the atomic scale. By mapping the discrete hardware that underlies quantum software, local realism, determinism, and absolute mechanical causality are fully restored to atomic physics. Key Mechanical Derivations Included: Replacing Schrödinger: The Topological Resonance Equation redefines electron energy levels as deterministic network routing paths. Replacing Heisenberg: The Uncertainty Principle (/2) is mathematically mapped as the Substrate Resolution Limit—an asymptotic hardware buffer overrun (Bandwidth Saturation). The Bohr Radius & Rydberg Protocol: Re-derived as strict geometric hardware constraints and topological data exhaust. The Photoelectric Effect: Re-derived as localized structural bandwidth saturation. The Casimir Effect: The 1 Atmosphere measurement discrepancy is resolved mathematically via the discrete Bilateral Elasticity Factor (2^-2), eliminating the need for virtual zero-point particles.
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Marco Lindenbeck
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Marco Lindenbeck (Fri,) studied this question.
www.synapsesocial.com/papers/6a0172233a9f334c2827241f — DOI: https://doi.org/10.5281/zenodo.20096939
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