4. Solve for the support reactions at A and B. W1 600 lb/ft W2 150 lb/ft A B
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- If PCD=6000lb and PGD=1000lb (both compression), find P and Q.Two concrete blocks weighing 320 lb each form part of the retaining wall of a swimming pool. Will the blocks be in equilibrium when the pool is filled and the water exerts the line loading shown?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.
- The cable supports three 400-lb loads as shown. If the maximum allowable tension in the cable is 900 lb, find the smallest possible sag hC at C.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?Find the magnitude of the pin reaction at B caused by the weight W=80lb. Neglect the weights of the members.
- The uniform 240-lb bar AB is held in the position shown by the cable AC. Compute the tension in the cable.The homogeneous bar AB weighs 25 lb. Determine the magnitudes of the forces acting on the bar at A and B. Neglect friction.The woman is trying to move the crate of weight W by pulling on the rope at the angle to the horizontal. Find the smallest possible tension that would cause the crate to slide and the corresponding angle .
- Find the internal force systems acting on sections 1 and 2.The pulley-cable system supports the 150-lb weight. The weights of the pulleys and the horizontal bar ABC are negligible. Determine the cable tensions at A and C and the distance x.The tensions in the cable at points O and B are TO=1200N and TB=1800N. Determine the weight W of the cable.