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Maxwell's Equations Are a Compilation of the Fundamental Laws Needed EdA=Qinside ε0\oint \vec { E } \cdot d \vec { A } = \frac { Q _ { \text {inside } } } { \varepsilon _ { 0 } }

Question 13

Multiple Choice

Maxwell's equations are a compilation of the fundamental laws needed for a complete mathematical description of the behavior of electric and magnetic fields. The equation that mathematically reflects that there are no isolated magnetic poles is


A) EdA=Qinside ε0\oint \vec { E } \cdot d \vec { A } = \frac { Q _ { \text {inside } } } { \varepsilon _ { 0 } }
B) BdA=0\oint \vec { B } \cdot d \vec { A } = 0
C) Eds=dΦBdt\oint \vec { E } \cdot d \vec { s } = - \frac { d \Phi _ { B } } { d t }
D) Bds=μ0I+μ0ε0dΦEdt\oint \vec { B } \cdot d \vec { s } = \mu _ { 0 } I + \mu _ { 0 } \varepsilon _ { 0 } \frac { d \Phi _ { E } } { d t }

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