MHT CET · Physics · Electromagnetic Induction
A square of side ' \(L\) ' metre lies in \(x-y\) plane in a region where the magnetic field is \(\vec{B}\) and \(\vec{B}=B_0(2 \hat{i}+3 \hat{j}+4 \hat{k})\), where \(B_0\) is constant. The magnitude of flux passing through the square (in weber) is
- A \(\sqrt{29} \mathrm{~B}_0 \mathrm{~L}^2\)
- B \(4 \mathrm{~B}_0 \mathrm{~L}^2\)
- C \(2 \mathrm{~B}_0 \mathrm{~L}^2\)
- D \(3 \mathrm{~B}_0 \mathrm{~L}^2\)
Answer & Solution
Correct Answer
(B) \(4 \mathrm{~B}_0 \mathrm{~L}^2\)
Step-by-step Solution
Detailed explanation
\(\vec{A} = L^2 \hat{k}\) \(\Phi_B = \vec{B} \cdot \vec{A}\)
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