A loop, made of straight edges has six corners at \( \mathrm{A}(0,0...
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A loop, made of straight edges has six corners at \( \mathrm{A}(0,0,0), \mathrm{B}(\mathrm{L}, \mathrm{O}, 0) \) \( \mathrm{C}(L, L, 0), \mathrm{D}(0, \mathrm{~L}, 0) \mathrm{E}(0, L, L) \) and \( \mathrm{F}(0,0, L) \). A magnetic field
\( \mathrm{P} \) \( \mathbf{B}=B_{o}(\hat{\mathbf{i}}+\hat{\mathbf{k}}) \mathrm{T} \) is present in the region. The flux passing through
W the loop ABCDEFA (in that order) is
(a) \( B_{o} L^{2} \mathrm{~Wb} \).
(b) \( 2 B_{o} L^{2} \mathrm{~Wb} \).
(c) \( \sqrt{2} B_{o} L^{2} \mathrm{~Wb} \).
(d) \( 4 B_{o} L^{2} \mathrm{~Wb} \).
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