$A$ simple pendulum of mass $m$, length $l$, and charge $+q$ is suspended in the electric field produced by two conducting parallel plates as shown. The value of the deflection of the pendulum in the equilibrium position will be -

  • A
    $\tan^{-1}\left[\frac{q}{mg} \times \frac{C_{2}(V_{2}-V_{1})}{(C_{1}+C_{2})(d-t)}\right]$
  • B
    $\tan^{-1}\left[\frac{q}{mg} \times \frac{C_{1}(V_{1}+V_{2})}{(C_{1}+C_{2})(d-t)}\right]$
  • C
    $\tan^{-1}\left[\frac{q}{mg} \times \frac{C_{1}(V_{2}-V_{1})}{(C_{1}+C_{2})(d-t)}\right]$
  • D
    $\tan^{-1}\left[\frac{q}{mg} \times \frac{C_{2}(V_{1}+V_{2})}{(C_{1}+C_{2})(d-t)}\right]$

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