A block of mass M = 101.0 kg on an inclined plane is attached to another block of mass m via a string, as in the figure below. The coefficients of static and kinetic friction for the block and the incline are u = 0.40 and uy 0.20 and the plane is inclined 17.5° with horizontal. (a) Determine the range of values for m, the mass of the hanging block, for which the block will not move unless disturbed, but if nudqged, will slide down the incline. kg s ms kg (b) Determine a range of values for m for which the block will not move unless nudged, but if nudged will slide up the incline. kg s m s kg

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A block of mass M = 101.0 kg on an inclined plane is attached to another block of mass m via a string, as in the figure below. The coefficients of static and kinetic friction for the block
and the incline are u. = 0.40 and u, = 0.20 and the plane is inclined 17.5° with horizontal.
(a) Determine the range of values for m, the mass of the hanging block, for which the block will not move unless disturbed, but if nudged, will slide down the incline.
kg s ms
kg
(b) Determine a range of values for m for which the block will not move unless nudged, but if nudged will slide up the incline.
kg s m s
kg
eBook
Transcribed Image Text:A block of mass M = 101.0 kg on an inclined plane is attached to another block of mass m via a string, as in the figure below. The coefficients of static and kinetic friction for the block and the incline are u. = 0.40 and u, = 0.20 and the plane is inclined 17.5° with horizontal. (a) Determine the range of values for m, the mass of the hanging block, for which the block will not move unless disturbed, but if nudged, will slide down the incline. kg s ms kg (b) Determine a range of values for m for which the block will not move unless nudged, but if nudged will slide up the incline. kg s m s kg eBook
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