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Analysis of the Nature of Spatial Inductance and Capacitance v1.0 ——From World Quantum Theory to the Projection of Macroscopic Circuit Elements

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Zenodo2026-05-28 更新2026-05-29 收录
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Conventional circuit theory treats inductance L and capacitance C as lumped parameters, attributing their physical essence to "magnetic field energy storage" and "electric field energy storage." However, it fails to provide a self-consistent answer to the ontological question: "Where exactly is the energy stored?" This paper, starting from the three postulates of World Quantum Theory (WQT), derives the ontological origin of spatial inductance and capacitance: inductance is the macroscopic interface for the conversion of tangential momentum into radial stored energy (v→d), while capacitance is the macroscopic interface for the conversion of radial stored energy into tangential momentum (d→v). Furthermore, starting from the ontological definition of vacuum electromagnetic constants, we derive the identity relating the world quantum's macro-rotational frequency to the macroscopic LC resonance frequency: , thereby reducing the inductance and capacitance of circuit theory to projections of the world quantum's macro-rotational state under specific geometric boundaries. This paper does not overturn classical circuit formulas but provides them with a deeper physical substrate. Keywords: Inductance; Capacitance; World Quantum Theory; Macro-rotation; v/d energy distribution; LC resonance; Ontological projection

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Zenodo
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2026-05-28
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