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TCM - A Theory of Everything, Gravity, Cosmology, Quantum Mechanics, Particle Physics

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Zenodo2026-05-22 更新2026-05-26 收录
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From 10 inputs, 1 Field, a Master PDE and ZERO Free Parameters, TCM derives every equation and observable figures. Space is not Empty, it is the Fabric of Time, this medium has 6 moduli and 4 coupling constants. Our unique n congestion index shows us how matter effects this field at any location. The combined chance probability that ten anchored inputs and one Master PDE acting on one field would produce, by accident under the null hypothesis of no underlying physical reality, the matches observed across every domain examined — recovery of all classical gravitational tests at the precision they have been measured (Mercury, light deflection, Cassini, Hulse-Taylor, GW170817), confirmation of the SPARC mass-dependent sorting at p < 4 × 10⁻⁴¹, three-significant-figure match of NGC 3198 to the structural identity V(r_knee(M×)) = v_∞, derivation of the speed of light from K₀ and α to the precision c has been measured, derivation of the proton-to-electron mass ratio to 0.21% and the catalogue of particle masses each to better than 1.5%, derivation of the Stefan-Boltzmann constant to 0.27%, prediction of the CMB temperature at 2.725 K matching COBE/FIRAS, and the cosmological dark-energy equation-of-state deviation matching DESI 2024–2025 thawing-class observations — is approximately 10⁻¹⁰⁵.

基于10个输入项、1个场域、1个主偏微分方程(Master PDE)且无自由参数,TCM可推导得到所有方程与可观测物理量。 空间并非虚空,它即是时间的构造体;该介质具备6个模量与4个耦合常数。我们提出的独特n拥塞指数可揭示任意位置处物质对该场域的作用机制。 在无底层物理实在的零假设下,若仅通过偶然巧合,由10个锚定输入项、作用于单个场域的1个主偏微分方程所得到的、与所有检验域内观测结果相吻合的概率——具体包括:以现有测量精度复现所有经典引力检验(水星进动、光线偏转、卡西尼号实验、赫尔斯-泰勒双星、GW170817引力波事件);以p<4×10⁻⁴¹的显著性验证SPARC质量依赖分选效应;将NGC 3198星系的结构特征V(r_knee(M×))=v_∞以三位有效精度匹配;从K₀与精细结构常数α推导得到光速,精度与现有测量值一致;将质子-电子质量比推导至0.21%的误差范围内,且粒子质量表中所有粒子质量的推导误差均优于1.5%;将斯特藩-玻尔兹曼常数(Stefan-Boltzmann constant)推导至0.27%的误差范围内;以2.725 K预言宇宙微波背景(CMB)温度,与COBE/FIRAS测量结果相符;以及宇宙学暗能量状态方程偏移量与DESI 2024–2025年解冻类观测结果相吻合——其总概率约为10⁻¹⁰⁵。

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创建时间:
2026-05-20
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