Figure shows a square current carrying loop \( \mathrm{ABCD} \) of ...

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Figure shows a square current carrying loop \( \mathrm{ABCD} \) of side \( 10 \mathrm{~cm} \) and current \( \mathrm{i}=10 \mathrm{~A} \). The magnetic moment \( \overrightarrow{\mathrm{M}} \) of the loop is
(A) \( (0.05)(\hat{i}-\sqrt{3} \hat{k}) \mathrm{A}-\mathrm{m}^{2} \)
(B) \( (0.05)(\hat{j}+\hat{k}) \mathrm{A}-\mathrm{m}^{2} \)
(C) \( (0.05)(\sqrt{3} \hat{i}+\hat{k}) A-m^{2} \)
(D) \( (\hat{i}+\hat{k}) \mathrm{A}-\mathrm{m}^{2} \)
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Thank you for such detailed explanation, the only solution I found with full explanation!!

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