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@@ -299,6 +299,6 @@ $$S = k_0 \cdot q \cdot \Phi \qquad L_a = k_0 \cdot q \cdot \Phi$$
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  The product of charge × magnetic flux has the dimensions of an **action** and of an **angular momentum**: [C]·[Wb] = [J·s]. This isn't a coincidence — it's the backbone of three chapters of quantum physics:
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- - $q\Phi/\hbar$ is a phase → the **Aharonov–Bohm effect**;
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- - $L_a = q\Phi$: the electromagnetic field stores genuine angular momentumthe **Feynman disk paradox**;
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- - $q\Phi = n\hbar$**flux quantization** in superconductors and the **Dirac condition** for the magnetic monopole.
 
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  The product of charge × magnetic flux has the dimensions of an **action** and of an **angular momentum**: [C]·[Wb] = [J·s]. This isn't a coincidence — it's the backbone of three chapters of quantum physics:
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+ - \(q\Phi/\hbar\) est une phase → l'**effet Aharonov–Bohm** ;
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+ - \(L_a = q\Phi\) : le champ é.m. stocke un moment cinétiquele **paradoxe de Feynman** ;
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+ - \(q\Phi = n\hbar\)la **quantification du flux** ;