Solve These Better: Four Quantum Mysteries and a Fractal Framework

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Autore principale: Randolph, Lucian
Natura: Recurso digital
Lingua:inglese
Pubblicazione: Zenodo 2026
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author Randolph, Lucian
author_facet Randolph, Lucian
contents <p><strong>Description/Abstract:</strong> Four mysteries have persisted at the quantum scale for decades: the mechanism of wavefunction collapse, the structure of quantum entanglement, the origin of the matter-antimatter asymmetry, and the unexplained smallness of neutrino masses. Each has resisted resolution within existing frameworks. This paper presents answers to all four, derived from a single classification: the identification of the fundamental equations of physics as fractal geometric. No equation is modified. No new particle is proposed. Each answer generates specific, testable predictions against existing or near-future experimental data. This is a companion paper to "How to Break Resonance Theory" (DOI: 10.5281/zenodo.18750736), which addresses the large-scale mysteries. Together, they span the full range of physical reality from the Planck scale to the observable universe. The challenge is simple: solve these mysteries better, or test the solutions offered here.</p> <p><strong>Keywords:</strong> wavefunction collapse, quantum entanglement, baryogenesis, neutrino mass, seesaw mechanism, fractal geometry, phase transition, Resonance Theory, falsification, testable predictions, Bell inequality, measurement problem</p>
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spellingShingle Solve These Better: Four Quantum Mysteries and a Fractal Framework
Randolph, Lucian
wavefunction collapse
quantum entanglement
baryogenesis
neutrino mass
seesaw mechanism
fractal geometry
phase transition
Resonance Theory
falsification
testable predictions
Bell inequality
measurement problem
<p><strong>Description/Abstract:</strong> Four mysteries have persisted at the quantum scale for decades: the mechanism of wavefunction collapse, the structure of quantum entanglement, the origin of the matter-antimatter asymmetry, and the unexplained smallness of neutrino masses. Each has resisted resolution within existing frameworks. This paper presents answers to all four, derived from a single classification: the identification of the fundamental equations of physics as fractal geometric. No equation is modified. No new particle is proposed. Each answer generates specific, testable predictions against existing or near-future experimental data. This is a companion paper to "How to Break Resonance Theory" (DOI: 10.5281/zenodo.18750736), which addresses the large-scale mysteries. Together, they span the full range of physical reality from the Planck scale to the observable universe. The challenge is simple: solve these mysteries better, or test the solutions offered here.</p> <p><strong>Keywords:</strong> wavefunction collapse, quantum entanglement, baryogenesis, neutrino mass, seesaw mechanism, fractal geometry, phase transition, Resonance Theory, falsification, testable predictions, Bell inequality, measurement problem</p>
title Solve These Better: Four Quantum Mysteries and a Fractal Framework
topic wavefunction collapse
quantum entanglement
baryogenesis
neutrino mass
seesaw mechanism
fractal geometry
phase transition
Resonance Theory
falsification
testable predictions
Bell inequality
measurement problem
url https://doi.org/10.5281/zenodo.18756293