In the case of conical pendulum, if $\mathrm{T}$ is the tension in the string and $\theta$ is the…

In the case of conical pendulum, if $\mathrm{T}$ is the tension in the string and $\theta$ is the semivertical angle of cone, then the component of tension which balances the centrifugal force in equilibrium position is
  1. $\mathrm{T} \sin \theta$
  2. $\frac{(\mathrm{T} \sin \theta)}{2}$
  3. $\mathrm{~T} \tan \theta$
  4. $\mathrm{T} \cos \theta$

Solution

In the case of conical pendulum, if T is the tension in the string and \(\theta\) is the semivertical angle of cone, then the component of tension which balances the centrifugal force in equilibrium position is \(\mathrm{T} \sin \theta\)

Asked in: MHT CET 2020 (15 Oct Shift 2)

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