$A$ particle on the inner rough surface of a cone rotating about its vertical axis is at rest relative to the cone at a height of $1 \ m$ above its vertex. If the coefficient of friction is $\mu = 0.5$ and the semi-vertical angle of the cone is $45^\circ$,what is the maximum angular velocity $\omega$ of the cone?

  • A
    $\sqrt{10} \ \text{rad/s}$
  • B
    $\sqrt{30} \ \text{rad/s}$
  • C
    $\frac{\sqrt{40}}{3} \ \text{rad/s}$
  • D
    $\sqrt{50} \ \text{rad/s}$

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$A$ body of mass $200 \text{ g}$ is tied to a spring of spring constant $12.5 \text{ N/m}$,while the other end of the spring is fixed at point '$O$'. If the body moves about '$O$' in a circular path on a smooth horizontal surface with a constant angular speed of $5 \text{ rad/s}$,then the ratio of the extension in the spring to its natural length will be:

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