Two weights (one is 100lbs. the other is 50 lbs.) are suspended over a circular post as shown. Determine the minmum co-efficient of static friction such that the weights remain motionless if B=180.
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Two weights (one is 100lbs. the other is 50 lbs.) are suspended over a circular post as shown. Determine the minmum co-efficient of static friction such that the weights remain motionless if B=180.
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- Two identical chairs, each weighing 14 lb, are stacked as shown. The center of gravity of each chair is denoted by G. The coefficient of static friction is 0.2 at B (the contact point between the chairs) and 0.35 at A, C, and D. Determine the smallest force P that would cause sliding.The uniform ladder of weight W is raised slowly by applying a vertical force P to the rope at A. Show that P is independent of the angle .Calculate the horizontal force P required to push the 85-lb lawn mower at constant speed. The center of gravity of the mower is at G, and the coefficients of rolling resistance are 0.12 for the front wheels and 0.18 for the rear wheels.
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- The blocks A and B of weights WA and WB are joined by a rope that passes over the fixed peg C. The coefficients of static friction are =0.2 between block A and the inclined plane, and =0.25 between the rope and the peg. Determine the range of Wb/WA for which the system will be in equilibrium.Find the tension T in the cable when the 180-N force is applied to the pedal at E. Neglect friction and the weights of the parts.Find the smallest distance d for which the hook will remain at rest when acted on by the force P. Neglect the weight of the hook, and assume that the vertical wall is frictionless.