Find the reactions at the fixed support A given the distributed loads shown. (+)+ 1 = (d) 1 = su A y 4 ft. 200 lb/ft 150 lb/ft + 3 ft B
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- Find support reactions at 4 and Band then use the method of joints to find all member forces. Let b = 3 m and P = 80 kN.A12-ft wooden beam weighing 80 lb is supported by a pin and bracket at A and by cable BC. Find the reaction at A and the tension in the cable. 6 ft A ft 6 ft 80 Ib Match each item to a choice: Ax Tension on Cable Ay Choices:The frame below is used to support the distributed load as shown. (12) a) Find the reactions at C and E. Gft (8) b) Find the force in link BD. Is the link in compression or tension? 1.5 Lb/Ft B You must show all free body diagrams used and label all forces that appear on your diagrams and in your equations. 4,5ft
- Find the support reaction at A and the tension at the rope from the beam shown bellow. The pulley is frictionless. Given: a = 8 ft, b = 4 ft, c = 2 ft, r = 6 in, w1 = 1500 lb/ft. Note: Draw the free body diagram and answers should be in 3 decimal places.AsapDraw F.B.D then find reactions at supports A and B take AB weight 25K9 4m 30° 50
- Find the reactions at the supports for the beam that weighs 10 kN shown below. The length of the beam is 10m. 15KN 12KN 20kN 2m 2m 2mDetermine the reactions at supports for the following Figures. A 40 kN/m -8 m B. 3 m 20 KN 150 kN mA boom hinged at the base of a vertical mast is used to lift a 2000 lb load. Find the tension in the cable and the reaction R at the end of the boom. The angle of the boom is 40 degrees with the horizontal and the cable is 60 degrees with the vertical mast. Pls include given, formula, fbd, and solution.