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Zenodo
2026
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| Online-Zugang: | https://doi.org/10.5281/zenodo.19665012 |
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- <p><strong>Abstract</strong></p> <p>This paper argues that the strong force is not a fundamental force, but a redundant concept arising from a category error. By applying the Möbius LC framework, we demonstrate that the stability of the <span class="math-inline">$n=3$</span> fermion (proton/neutron) is self-contained within its topological resonance.</p> <p><strong>Key Findings</strong></p> <ul> <li> <p><strong>Nodes are Not Particles:</strong> We prove that the three nodes of the Möbius <span class="math-inline">$n=3$</span> standing wave (quarks) are intrinsic features of the wave pattern. The "confinement problem" is shown to be a category error, as a wave crest cannot be separated from its wave.</p> </li> <li> <p><strong>LC Circuit Completeness:</strong> The Möbius LC circuit is shown to be complete with exactly three interaction modes: electromagnetism (<span class="math-inline">$C \leftrightarrow C$</span>), weak force (<span class="math-inline">$L \leftrightarrow C$</span>), and gravity (<span class="math-inline">$L \to TGA$</span>). There is no physical room for a fourth force.</p> </li> <li> <p><strong>Incompatibility with Stability:</strong> Any additional force acting on the inner Möbius nodes would alter the inductance <span class="math-inline">$L$</span> and detune the circuit from the Compton resonance condition. Thus, the strong force is incompatible with fermionic stability.</p> <div> <div class="math-block">$$\omega_{0} = \frac{1}{\sqrt{LC}} = \frac{mc^{2}}{\hbar}$$</div> </div> </li> <li> <p><strong>Reinterpreting QCD:</strong> Phenomenon such as nuclear binding and asymptotic freedom are reinterpreted as TGA patch overlaps and the local-vs-global character of Möbius topology.</p> </li> </ul> <p><strong>Conclusion</strong></p> <p>The removal of the strong force simplifies the Standard Model into a self-consistent topological circuit, where the stability of matter is a direct consequence of Möbius resonance.</p>