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The XOY - plane carries a uniform surface current of density $$\overrightarrow {\bf{K}} = 50\,{{\bf{\hat e}}_z}$$   A/m. The magnetic fields at the point z = -0.5 m is

A. 10 × 10-6 Wb

B. 1 × 10-6 Wb

C. π × 10-6 Wb

D. 10π × 10-6 Wb

Answer: Option D


This Question Belongs to Engineering Physics >> Electromagnetic Theory

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Which one of the following current densities, $$\overrightarrow {\bf{J}} $$ can generate the magnetic vector potential $$\overrightarrow {\bf{A}} = \left( {{y^2}{\bf{\hat i}} + {x^2}{\bf{\hat j}}} \right)?$$

A. $$\frac{2}{{{\mu _0}}}\left( {x{\bf{\hat i}} + y{\bf{\hat j}}} \right)$$

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C. $$ - \frac{2}{{{\mu _0}}}\left( {{\bf{\hat i}} - {\bf{\hat j}}} \right)$$

D. $$\frac{2}{{{\mu _0}}}\left( {x{\bf{\hat i}} - y{\bf{\hat j}}} \right)$$