WBJEE · Physics · Magnetic Effects of Current
A wire carrying a steady current \(I\) is kept in the \(x\)-y plane along the curve \(y=A \sin \left(\frac{2 \pi}{\lambda} x\right)\). A magnetic field \(B\) exists in the \(z\)-direction. The magnitude of the magnetic force in the portion of the wire between \(x=0\) and \(x=\lambda\) is
- A 0
- B \(2 \mathrm{I} \lambda \mathrm{B}\)
- C \(\mathrm{I} \lambda \mathrm{B}\)
- D \(\mathrm{I} \lambda \mathrm{B} / 2\)
Answer & Solution
Correct Answer
(C) \(\mathrm{I} \lambda \mathrm{B}\)
Step-by-step Solution
Detailed explanation
Hint : Magnetic force \(=\mathrm{I} \lambda \mathrm{B}\)
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