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$$\oint \vec{B}\cdot d\vec{l} = \mu_0 i_c + \mu_0\varepsilon_0 \frac{d\phi_E}{dt} \implies \text{Ampere-Maxwell law (IV)}$$
$$\oint \vec{E}\cdot d\vec{l} = -\frac{d\phi_B}{dt} \implies \text{Faraday's law (III)}$$
$$\oint \vec{E}\cdot d\vec{A} = \frac{Q}{\varepsilon_0} \implies \text{Gauss' law for electricity (I)}$$
$$\oint \vec{B}\cdot d\vec{A} = 0 \implies \text{Gauss' law for magnetism (II)}$$
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