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Openai/6897769e-4ee4-800f-aba5-69cca34f701c
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=== • Showing how a surface quantization produces exactly the electron charge e (currently e is a measured quantum; deriving it from geometry is deep). === • Deriving the Planck constant h/2πh/2\pih/2π from boundary phase conditions and showing that it matches the same constant that appears in action quantization across systems. • Showing that ε0\varepsilon_0ε0 (vacuum permittivity) is not an independent input but can be produced by geometry or by field embedding — many derivations treat ε₀ as a material constant of the vacuum, so deriving it geometrically is hard. • Avoiding circular arguments: if you insert Planck's constant or e or c as inputs, you're not deriving α — you're restating it. But these challenges are not impossible: other historical theories (like Kaluza–Klein or geometric EM proposals) show how to relate constants to geometry — it’s just a high bar to match precision.
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