A charge particle of charge \( q \), mass \( m \) is projected with a velocity \( \vec{v}=v \hat...
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A charge particle of charge \( q \), mass \( m \) is projected with a velocity \( \vec{v}=v \hat{i} \). The electric field \( \vec{E}=E \hat{k} \) and magnetic field \( \vec{B}=B \hat{j} \) is applied. The acceleration of the particle is
(a) \( \frac{q v B}{m} \hat{k} \)
(b) \( \frac{q E}{m} \hat{k} \)
(c) \( \frac{q(E+v B) \hat{k}}{m} \)
(d) \( \frac{q(E-v B) \hat{k}}{m} \)
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