The Universal Scaling Constant R = 1.0664: A Unified Framework for Quantum Mechanics, Biophysics, and Resonant Engineering.

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Autore principale: Arnold, Oleg
Natura: Recurso digital
Pubblicazione: Zenodo 2026
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author Arnold, Oleg
author_facet Arnold, Oleg
contents <p>This work presents the discovery of a fundamental scaling constant R = 1 + 17/256 ≈ 1.06640625, derived without free parameters from the product of the Dirac Large Number and the Gravitational Coupling Constant.</p> <p>The author demonstrates that this constant governs the stability of physical and biological systems across 40 orders of magnitude. The document provides 21 independent empirical verifications, including:</p> <p>Physics: Prediction of vacuum viscosity (η/s) confirmed by LHC/RHIC data.</p> <p>Geophysics: Precise calculation of Earth’s Schumann resonance (N=32).</p> <p>Biology: Numerical explanation of mammalian body temperature and DNA stability.</p> <p>Applied Technologies Included:</p> <p>Energy: Design for a non-toxic ZnO lamp (100,000h life).</p> <p>Medicine: Resonant dielectric hyperthermia for targeted cancer elimination.</p> <p>Environment: RESOLIA—a layered polymer that biodegrades via UV-trigger.</p> <p>Transport: High-efficiency sequential hybrid drivetrain (2.0L/100km).</p> <p>Computing: Porous photonic computer architecture based on MOF resonance.</p> <p>This is a complete engineering blueprint for a new generation of sustainable, resonance-based technologies.</p>
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publishDate 2026
publisher Zenodo
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spellingShingle The Universal Scaling Constant R = 1.0664: A Unified Framework for Quantum Mechanics, Biophysics, and Resonant Engineering.
Arnold, Oleg
<p>This work presents the discovery of a fundamental scaling constant R = 1 + 17/256 ≈ 1.06640625, derived without free parameters from the product of the Dirac Large Number and the Gravitational Coupling Constant.</p> <p>The author demonstrates that this constant governs the stability of physical and biological systems across 40 orders of magnitude. The document provides 21 independent empirical verifications, including:</p> <p>Physics: Prediction of vacuum viscosity (η/s) confirmed by LHC/RHIC data.</p> <p>Geophysics: Precise calculation of Earth’s Schumann resonance (N=32).</p> <p>Biology: Numerical explanation of mammalian body temperature and DNA stability.</p> <p>Applied Technologies Included:</p> <p>Energy: Design for a non-toxic ZnO lamp (100,000h life).</p> <p>Medicine: Resonant dielectric hyperthermia for targeted cancer elimination.</p> <p>Environment: RESOLIA—a layered polymer that biodegrades via UV-trigger.</p> <p>Transport: High-efficiency sequential hybrid drivetrain (2.0L/100km).</p> <p>Computing: Porous photonic computer architecture based on MOF resonance.</p> <p>This is a complete engineering blueprint for a new generation of sustainable, resonance-based technologies.</p>
title The Universal Scaling Constant R = 1.0664: A Unified Framework for Quantum Mechanics, Biophysics, and Resonant Engineering.
url https://doi.org/10.5281/zenodo.19876923