> Determine reactions in A and tension in cable as shown in figure?
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- Problem # AJ Assuming it can ONLY take tension, find the Tension in the cable "AC" B) Calculate the reactions at points "C" and "B“G - Useithe below figure and ignore self-welght 350 mm 742 mm- B. SI0 mm 240 mm 450 mm- 41° 5 kNH CABLES & RODS 100° HORIZONTAL 45° E 90° F 115° 1. The block system is stationary as shown in the figure. Compute В 55° 85° the internal reaction of the horizontal cable 145° LA GI. 10 KN 20 KN 20 KN 40 KNIn the figure, AB is a rigid rod and CB is a cable. If M is 900kg, what is the pin reaction at A on the rod AB? What is the tension in the cable?
- Determine the support reactions of the frame shown in the following figure. Also, determine internal forces at C. 3 m A 15 kN/m C P2m +21 -2 m- B -2 m- 60 KNHi! Hope you can help me with this. F1 = 500kN F2 = 600kN Find the force member in CD, BD, AB, BC. Indicate if Tension or CompressionFor the frame shown in figure below. Determine the reactions at A, C, and F. 30 kN/m 15 kN/m C D 3m 4m B 9m 8m E 5m 10 kN 3m
- Consider the bracket shown in Fig-3. If: • F1 = 10 lb @ -90° • a = 2 ft • b = 4 ft • c = 1 ft then, what is the direction of the vertical reaction at point 'D? 0° 90° 180° O 270°The reactions at the rigid supports at A and B for the bar loaded as shown in the figure are respectively: 1m C 1. 20/3 kN, 10/3 KN 2. 10/3 kN, 20/3 KN 3. 5 kN, 5 kN 4. None of these 10 kN 2m BFrom the given truss, find the force of member BH, Load 1 = 195 kN, Load 2 = 390 kN Solve this using two methods: (a) Method of Joints or (b) Method of Sections. AB 5 m B 4 m H Load 1 5 m C G Load 2 5 m D F Load 1 5 m
- Please show the formula used and free body diagram A rectangular steel block is 4 inches long in the x direction, 3 inches long in the y direction, and 4 inches long in the z direction. The block is subjected to a triaxial loading of three uniformly distributed forces as follows: 48 kips tension in the x direction, 60 kips compression in the y direction, and 54 kips tension in the z direction. If ν = 0.30 and E = 29 × 106 psi, determine the single uniformly distributed load in the x direction that would produce the same deformation in the y direction as the original loading.(78 E A O o 1.:ra Your answer Q1 * Find tension in AC and W ? 60 3° 10 lbs W=20 Ibs , TAC=17.32 Ibs W=18.95 Ibs , TAC=21.91 Ibs W=18 Ibs , TAC=20.1 lbs Find the reaction in pin A?At the nodes in the truss system given in the figure occurring displacement and the stress and reaction that occurs Find the forces.E=200GpaA=10000 mm2