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The two blocks shown are originally at rest. Neglecting the masses of the pulleys and the effect of friction in the pulleys and knowing that the coefficients of friction between the blocks and the inclines are
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- The two blocks shown are originally at rest. Neglecting the masses of the pulleys and the effect of friction in the pulleys and knowing that the coefficients of friction between the blocks and the inclines are ls = 0.25 and = 0.2, determine (a) the acceleration of each block, (b) the tension in the cable. 200 lb 90° 20° 300 lb Вarrow_forwardBoxes A and B are at rest on a conveyor belt that is initially at rest. The belt is suddenly started in an upward direction so that slipping occurs between the belt and the boxes. Knowing that the coefficients of kinetic friction between the belt and the boxes are (μk) A= 0.30 and (μk)B= 0.32, determine the initial acceleration of each box.arrow_forwardTo unload a bound stack of plywood from a truck, the driver first tilts the bed of the truck and then accelerates from rest. Knowing that the coefficients of friction between the bottom sheet of plywood and the bed are μs= 0.40 and μk= 0.30, determine (a) the smallest acceleration of the truck which will cause the stack of plywood to slide, (b) the acceleration of the truck which causes corner A of the stack to reach the end of the bed in 0.9 s.arrow_forward
- The two blocks shown are originally at rest. Neglecting the masses of the pulleys and the effect of friction in the pulleys. determine (a) the acceleration of each block, (6) the tension in the cable. 200 Ib assuming that the coefficients of Solve Problem friction between block A and the incline are 4, =0.25 and He =0.20. B 350 lb 30arrow_forwardIf the coefficients of static and kinetic friction between the 30-kg block A and the 83-kg cart B are both essentially the same value of 0.56, determine the acceleration of each part for (a) P = 114 N and (b) P = 88 N.arrow_forwardProblem 3.115 I A force Fo of 400 lb is applied to block B. Letting the weights of A and B be 55 and 73 lb, respectively, and letting the static and kinetic friction coefficients between blocks A and B be µi = 0.25, and the static and kinetic friction coefficients between block B and the ground be µ2 = 0.45, determine the accelerations of both blocks. Fo Barrow_forward
- A 50 Ib block A is attached to a wire that is wrapped around the shown flywheel of 30" radius and I = 12 ft-lb-s². The system is released from the rest. Neglect the effect of friction, determine (a) the acceleration of the block A, (b) the speed of the block A after it has moved 10 ft. Aarrow_forward3. A 10.0-kg block is released from point A on a track ABCD as shown. The track is frictionless except for the portion BC, of length 6.0 m. The block travels down the track and hits a spring with a spring constant of 2250 N/m and compresses it a distance of 0.30 m from its equilibrium position before coming to a stop momentarily. Determine the coefficient of kinetic friction between the track portion BC and the block. 3m 6 m- wwwwwwwarrow_forwardKnowing that the coefficient of static friction between the tires and the road is 0.80 for the car as shown in figure 2. At this car, suddenly brakes are applied when it was moving with velocity of 360 inch/sec and it skidded to rest in 240 inch. Determine the magnitude of the normal reaction and of the friction force in the terms of W(weight) at each wheel as the car skidded to rest. { Use m=w/g, for the mass of the car if required, where g=386.09inch/s2.}arrow_forward
- Draw the FBD of A and B when the wedge B impends to slide to the left. Friction is negligible except for the surface under B whose coefficient of friction is 0.20. (b) Determine the magnitude of P to start the wedge B to slide to the left.arrow_forward6: The two blocks shown are originally at rest. Neglecting the masses of the pulleys and the effect of friction in the pulleys. determine (a) the acceleration of each block, (6) the tens1on in the cable. 200 lb Solve Problem friction between block A and the incline are 4, =0.25 and He = 0.20. assuming that the coefficients of B 350 lb (Force and Acceleration)arrow_forwardTwo bodies of weight 20 N and 10 N are connected to the two ends of a light inextensible string, passing over a smooth pulley. The weight of 20 N is placed on a horizontal surface while the weight of 10 N is hanging free in air. The horizontal surface is a rough one, having coefficient of friction between the weight 20 N and the plane surface equal to 0.3, determine. 1. the acceleration of the system. 2. the tension in the string. Tension of String (N)=______ Acceleration (m/s²)=______arrow_forward
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