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[" tated by the wheel."],[" wheel of mass "10kg" and radius "0.2m" is rotating at an angular speed of "100rpm," when the "],[" wheel of mass "10kg" and radius "0.2m" is rotating at an angular speed of "100rpm" ,when the "],[" otion is turned off.Neglecting the riction at the axis,calculate the force that must be applied "],[" ngentially to the wheel to bring it to rest in "10rev" .Assume wheel to be a disc."],[" a the defecter chate cotationant aris according to the law "theta=6t-2t^(3)" .Here,"theta" is in radian "]

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A wheel of mass 10 kg and radius 0.2 m is rotating at an angular speed of 100 rpm, when the motion is turned off. Neglecting the friction at the axis. Calculate the force that must be applied tangentially to the wheel to bring it to rest in 10 rev. Assumed wheel to be a disc.

A wheel of mass 10 kg and radius 0.2 m is rotating at an angular speed of 100 rpm, when the motion is turned off. Neglecting the friction at the axis. Calculate the force that must be applied tangentially to the wheel to bring it to rest in 10 rev. Assumed wheel to be a disc.

A wheel of mass 10 kg and radius 0.2 m is rotating at an angular speed of 100 rpm, when the motion is turned off. Neglecting the friction at the axis. Calculate the force that must be applied tangentially to the wheel to bring it to rest in 10 rev. Assumed wheel to be a disc.

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