Q3) Determine the maximum weight of block A for which the maximum tension in cable CD does not exceed 160 N D B 60 C |3
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Q: Q3) Determine the maximum weight of block A for which the maximum tension in cable CD does not…
A: Given Data TCD=160 N
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Q: Q3) Determine the maximum weight of block A for which the maximum tension in cable CD does not…
A: We are suppose to solve only one question. Please post other question as a separate question.
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Q: Q3) Determine the maximum weight of block A for which the maximum tension in cable CD does not…
A: Given Data TCD=160 N
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Q: Q3) Determine the maximum weight of block A for which the maximum tension in cable CD does not…
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Q: Q3) Determine the maximum weight of block A for which the maximum tension in cable CD does not…
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- The 30-lb block is held in place on the smooth inclined plane by the force P. (a) Knowing that =20, determine P. (b) Given that P=40lb, find the angle .The tensions in the cable at points O and B are TO=1200N and TB=1800N. Determine the weight W of the cable.The 110-lb traffic light is suspended from two identical cables AB and BC, each weighing 0.80 lb/ft. If the maximum allowable horizontal force exerted by a cable on a vertical post is 170 lb, determine the shortest possible length of each cable and the corresponding vertical distance h.
- One end of cable AB is fixed, whereas the other end passes over a smooth pulley at B. If the mass of the cable is 1.2 kg/m and the sag is H = 1.6 m, determine the mass M that is attached to the free end of. the cable.Determine the largest angle for which the homogeneous block remains at rest.The homogeneous 240-lb bar is supported by a rough horizontal surface at A, a smooth vertical surface at B, and the cable BC. Draw the FBD of the bar and count the unknowns.
- Draw the FBD of the entire frame, assuming that friction and the weights of the members are negligible. How many unknowns appear on this FBD?The homogeneous plate of weight W is supported by a ball-and-socket joint at D and three wires. Draw the FBD of the plate and count the unknowns.A uniform 80-ft pipe that weighs 960 lb is supported entirely by a cable AB of negligible weight. Determine the length of the cable and the maximum force in the cable. (Hint: First locate the point O where the cable is tangent to the pipe.)
- 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.The cable of the suspension bridge spans L=140m with a sag H=20m. The cable supports a uniformly distributed load of w0 N/m along the horizontal. If the maximum allowable force in the cable is 4 MN, determine the largest permissible value of w0.The 15-m-long cable supports the loads W1 and W2 as shown. Find the ratio W1/W2 for which the segment BC will be horizontal; that is, 2=0.