Abstract This paper identifies the weak force as LC Detuning: a temporary departure from the LC resonance condition in a Möbius circuit. We derive the properties of W and Z bosons as energy quanta of inductive-capacitive imbalance. Key Findings Weak Bosons as Detuning Quanta: The W^- and W^+ bosons are identified as the release of excess inductive and capacitive energy, respectively, from the Möbius layers. Topological Parity Violation: We prove that parity violation is not a postulate, but a consequence of the unidirectionality of the Time-Gravity Axis (TGA). Only left-handed fermions possess a stable LC resonance ground state. ₆ > 0 Stable Resonance Electroweak Unification: The Weinberg angle ₖ is interpreted as the geometric mixing angle between inductive and capacitive impedances. ₖ = Z₂Z₋ -Decay as LC Relaxation: The neutron is modeled as an LC circuit below resonance that relaxes to the proton configuration by emitting detuning energy. Q = (Z₋-Z₂) = 1. 293 MeV
Zheng Yan (Mon,) studied this question.