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Catalog: Derived Physics Phenomena by the Canvas Model

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Zenodo2026-05-24 更新2026-05-26 收录
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https://zenodo.org/doi/10.5281/zenodo.20366152
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The Canvas Model, together with Canvas Temporal Mathematics (CTM), derives over 100 established physical theories, equations, and phenomena from first principles. This paper compiles these derivations in a single table, documenting the name of each theory, equation, or phenomenon and its derivation status within the Canvas Model. What this compilation demonstrates: All entries are derived from the eight primitives and three equations of the Canvas Model, with zero free parameters. The Canvas Model does not merely describe these phenomena — it derives them from first principles. Selected examples of derived frameworks: · Foundational theories: General Relativity, Quantum Mechanics, Quantum Field Theory, Quantum Electrodynamics, Quantum Chromodynamics, Electroweak Theory, the Standard Model· Discrete gravity approaches: Regge Calculus, Loop Quantum Gravity (discrete spacetime), String Theory, Causal Set Theory· Classical physics: Newton's laws, Hooke's law, work-energy theorem, Coulomb's law, Ohm's law, Kirchhoff's laws, Bernoulli's principle, ideal gas law, Boltzmann distribution, Snell's law, speed of sound· Quantum mechanics: Schrödinger equation, Dirac equation, Klein-Gordon equation, uncertainty principle, quantum tunneling, Casimir effect, Feynman diagrams, Bell inequality violation, quantum teleportation, Unruh effect, Aharonov-Bohm effect, Berry phase, quantum Zeno effect, quantum decoherence, Hong-Ou-Mandel effect, SPDC· Black hole physics: Hawking radiation, black hole entropy, Page curve· Cosmology: Friedmann equations, primordial gravitational waves, reheating, baryon acoustic oscillations, E = mc^2· Particle physics: CKM matrix, neutrino oscillations, CP violation, gauge coupling unification, magnetic monopoles, left-handed weak force· Condensed matter: Kondo effect, Meissner effect, Josephson effect, BCS gap equation, London equations, Landau critical velocity, Gross-Pitaevskii equation, Thouless formula· Atomic and optical physics: Lamb shift, Zeeman effect, Stark effect, Einstein A and B coefficients, Rabi oscillations, Sagnac effect, Faraday effect, optical coherence, Bethe formula, Fermi contact interaction, Landé g-factor, WKB approximation· Nuclear physics: Alpha decay, beta decay, gamma decay, nuclear fission, nuclear fusion, nuclear magnetic resonance, Geiger-Nuttall law, Weisskopf estimates, nuclear shell model, Larmor precession· Mathematics: Periodic table of spectral transforms Summary: Over 100 frameworks derived from first principles. All entries are derived from the eight primitives and three equations of the Canvas Model, with zero free parameters. Why this matters: The Canvas Model is not a collection of ad hoc hypotheses. It is a unified framework that derives the fundamental equations of physics and mathematics from first principles. Theories that were once considered separate and irreducible are shown to be consequences of the same eight primitives. The scope and explanatory power of the Canvas Model are unprecedented. Keywords: Canvas Model, CTM, derived frameworks, general relativity, quantum mechanics, quantum field theory, Standard Model, string theory, Schrödinger equation, Dirac equation, Maxwell's equations, Yang-Mills, Hawking radiation, CKM matrix, neutrino oscillations, condensed matter, atomic physics, nuclear physics, spectral transforms, zero free parameters
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Zenodo
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2026-05-24
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