Q10) Body A weighs 600 lb contact with smooth surfaces at D and E. Determine the tension in the cord and the forces acting on C on member BD, also calculate the reaction at B and F. Cable 6' 3' www
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- 2. Use the Method of Sections for this problem. From drawing a FBD of the entire system and summing the moments about point A, you find that the reaction force at roller F=115kN ↑. Determine the force in members CD, CH, and HI and state if each member is in tension or compression. 2 m 80 kN 100 kN 2 m- 2 m- E D 1.5 m C -60 kN H 1.5 m B 80 kN I A 1.5 mThe compound bar is supported by a thrust bearing at A, a slider (journal) bearing at B, and the cable CD. Determine the tension in the cable and the magnitude of the bearing reaction at A. Neglect the weight of the bar. With complete fbd. Please compute using equations for moment (simul equation in calculator) and show the steps2.0 m 100 kg 2.0 m 0.5 m 1.5 m 1.5 m The pulley at E is frictionless. Point B is a pinned connection; support A is a fixed support. The pin at C is in a smooth slot. s in: Determine the magnitude of of the x-component of the reaction force at A, Ax= N. Determine the magnitude of of the y-component of the reaction force at A, Ay= N. Determine the magnitude of of the external moment applied at A, MA= Nm. O O :
- The tied three-hinged arch is subjected to the loading shown. Assume that the cable offsets the horizontal reaction of pin A (Ax = 0). Calculate the following: a. Reaction at D, in b. Vertical reaction at A, in kN and tension in the cable, in kN.The 350-lb homogeneous plate has the shape of an isosceles triangle. The plate is supported by a thrust hinge at A, a slider hinge at B, and the cable CD. Find the force in the cable and the magnitudes of the hinge reactions.The figure shows a three-pin arch. Determine the horizontal component of the pin reaction at A caused by the applied force P.
- 3Don't provide handwritten solution.NOTE: This is a multi-part question. Once an answer is submitted, you will be unable to return to this part Bar AD is attached at A and C to collars that can move freely on the rods shown. Consider a=0. B E 0.2 m-0.2m----0.2 m- P D Draw the free-body diagram needed to determine the tension in the cord and the reactions at A and C (You must provide an answer before moving on to the next part)
- The compound bar is supported by a thrust bearing at A, a slider (journal) bearing at B, and the cable CD. Determine the tension in the cable and the magnitude of the bearing reaction at A. Neglect the weight of the bar. With complete fbd.The cable supports the three concentrated loads shown below. Determine the vertical positions yB and yB of points B and D and the tension in each segment of the cable. The loads are P= 400 lb P= 410 lb P3= 160 lb 4 ft 14 ft B P3 V P, P2 12 ft -- 20 ft - 12 ft -- 15 ftThe uniform plank ABC weighs 400 N. It is supported by a pin at A and a cable that runs around the pulley D. Determine the tension in the cable and the components of the pin reaction at A. Note that the tension in the cable is constant (see Sample Problem 4.5).