1088. Consider the apparatus shown in the figure to the right. The mass m remains at a constant position with respect to the incline if the wedge is spun at a certain constant L angular speed . Assuming the wedge surface is frictionless, and the wedge is rotated as shown, calculate the required tangential speed v in terms of L and 0.
1088. Consider the apparatus shown in the figure to the right. The mass m remains at a constant position with respect to the incline if the wedge is spun at a certain constant L angular speed . Assuming the wedge surface is frictionless, and the wedge is rotated as shown, calculate the required tangential speed v in terms of L and 0.
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the answer v=sqrgLsin@.

Transcribed Image Text:1088. Consider the apparatus shown in the figure to the right. The mass m remains at a
constant position with respect to the incline if the wedge is spun at a certain constant L
angular speed . Assuming the wedge surface is frictionless, and the wedge is
rotated as shown, calculate the required tangential speed v in terms of L and 0.
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