Determine the minimum weight W to prevent downplane motion of the 1000 lb body. The coefficient of friction the rope and the fixed drum is 0.20 and the coefficient of friction between all contact surfaces is 0.3.
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- The single-threaded screw of the floor jack has a pitch of 0.5 in. and a mean radius of 1.75 in. The angle of static friction is 8.5. (a) Determine the couple C that must be applied to the screw to start lifting a weight of 4000 lb. (b) What is the couple required to start lowering the weight?The leather rein used to fasten the horse to the hitching rail weighs 3.5 oz per foot. The coefficient of static friction between the rail and the rein is 0.6. If a 34-lb force acting on the bridle is sufficient to restrain the horse, determine the smallest safe length L for the free end of the rein.The square-threaded screw 0f the C-clamp has a mean diameter of 8 mm and a pitch of 1.6 mm. The coefficient of static friction between the threads is 0.2. If the torque C=1.50Nm is used to tighten the clamp, determine (a) the clamping force; and (b) the torque required to loosen the clamp.
- The screw of the clamp has a square thread of pitch 0.16 in. and a mean diameter of 0.6 in. The coefficient of static friction between the threads is 0.4. Determine (a) the torque C0 that must be applied to the screw in order to produce a 28-lb clamping force at A; and (b) the torque required to loosen the clamp.The two homogeneous bars AB and BC are connected with a pin at B and placed between rough vertical walls. If the coefficient of static friction between each bar and the wall is 0.25, determine the largest angle 6 for which the assembly will remain at rest.The screw of the carjack has a pitch of 0.1 in. and a mean radius of 0.175 in. Note that the ends of the screw are threaded in opposite directions (right- and left-handed threads). The coefficient of static friction between the threads is 0.08. Calculate the torque C0 that must be applied to the screw in order to start the 1200-1b load moving (a) upward; and (b) downward.
- The brake pads at C and D are pressed against the cylinder by the spring BF. The coefficient of static friction between each pad and the cylinder is 0.15. Find the smallest tension in the spring that would prevent the cylinder from rotating when the clockwise couple M=2200lbin. is applied. Neglect the weights of the members.The coeffient of static friction between the uniform bar AB of weight W and the ground is 0.45. Find the smallest angle and the corresponding force P that would initiate simultaneous tipping and sliding of the bar.The two uniform sheets of plywood, each of length L and weight W, are propped as shown. If the coefficient of static friction is 0.5 at all three contact surfaces, determine whether the sheets will remain at rest.
- The coefficient of static friction for both wedge surfaces is 0.44 and that between the 31-kg concrete block and the 29° incline is 0.77. Determine the minimum value of the force Prequired to begin moving the block up the incline. Neglect the weight of the wedge. 31 kg 6.3 29 Answer: P=The truck and crate shown in (Eigure 1) are resting on an upward 10° incline. The truck has a mass of 1.15 Mg and a center of mass at G. The coefficient of static friction between the wheels and the ground is = 0.5, and between the crate and the ground, it is e=0.4. Figure 600 m 800 mm 15m- Y Determine the greatest load the truck can move if it has rear-wheel drive while the front wheels are free to roll. Express your answer to three significant figures and include the appropriate units. W max = Submit Part B Wmax = μA Submit Value Request Answer 4 Determine the greatest load the truck can move if it has four-wheel drive. Express your answer to three significant figures and include the appropriate units. Value HA 1 Return to Accionment Request Answer CE Units @ O Units ? Provide Feedback ?Two identical wood blocks with weight W are being pushed apart by a wedge. The coefficient of static friction for all surfaces is 0.325. Determine the weight of the wedge, P, required to start the blocks moving. The wedge is symmetrical about the vertical, and 0 = 24°. Use the triangle method or the component method. urgenttt thank you