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Emergence VOL1

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Zenodo2026-04-19 更新2026-05-26 收录
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Title: Emergence: A Deterministic Model from Wave Intersections on a Pre‑Geometric Canvas — Complete Series (Papers I–VII) Author: Edwin ONG License: Creative Commons Attribution 4.0 (CC BY 4.0) Abstract:We present a deterministic model in which spacetime, quantum fields, and gravity emerge from open and closed waves on a pre‑geometric canvas. The model derives the speed of light, derives the Born rule, solves the measurement problem, avoids black hole singularities, explains dark energy as residual lattice tension, and makes testable predictions (CMB cutoff, energy‑dependent speed of light). Contents:Paper I: Core Framework (canvas, waves, thresholds, lattice, gravity)Paper II: Quantum Foundations (tunneling, Casimir, Unruh, Aharonov‑Bohm, Berry, Zeno, decoherence, HOM, SPDC)Paper III: Black Holes and Cosmology (Hawking radiation, information paradox, BAO, primordial GWs, inflation, arrow of time)Paper IV: Particle Physics (neutrino oscillations, CP violation, baryon asymmetry, axions, monopoles)Paper V: Condensed Matter (Kondo, fractional Hall, superconductivity, superfluidity, BEC, Josephson, Anderson localization)Paper VI: Atomic and Optical Physics (Lamb shift, hyperfine, Zeeman, Stark, Sagnac, Faraday, coherence)Paper VII: Nuclear and Biophysics (alpha, beta, gamma decay, photosynthesis, magnetoreception) Keywords: emergence, canvas, wave intersections, threshold, lattice compression, quantum gravity, unified theory, deterministic model, measurement problem, Born rule, black holes, cosmology, particle physics, condensed matter Citation: Edwin Ong, Emergence: A Deterministic Model from Wave Intersections on a Pre‑Geometric Canvas — Complete Series (Papers I–VII), Zenodo (2025). DOI: [10.5281/zenodo.19648520]

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2026-04-19
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