The smooth cylinder is supported by two pinned members held together by spring AB. The floor upon which the members rest is smooth. Determine the unstretched length of the spring. D 100 lb 8+0 E 5 in.-diameter 24 in. k=25 lb/in B A -6 in 6 in-
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- The 10 Ib weight is supported by the cord AC, a roller and by a spring. If the spring has an unstretched length of 8 in. and the weight is in equilibrium when d = 4 in., determine the stiffness k of the spring. 12 in. in A Select one: O a.k= 4.8 lb/in Ob.k=7.8 Ib/in Oc.k=6.8 Ib/in Od.k=5.8 Ib/inDetermine the magnitude of the pin force at A. Assume W = 645 lb, a = 4.5 ft, b = 3.3 ft, r = 8 in. B W Answer: A = Ibka block is held in equilibrium by the system of springs. Draw a free-body diagram for the ring at A. -3 m kAC = 20 N/m 3 m kAB = 30 N/m kAD = 40 N/m D
- ta block is held in equilibrium by the system of springs. Draw a free-body diagram for the ring at A. -3 m KAC wwww = 20 N/m 3 m kAB = 30 N/m kAD = 40 N/m D.Two blocks A and B have a weight of 50 N and 30 N, respectively. They are resting on the incline for which the coemicients of static fniction are = 0.15 and H = 0.25. The spring has a stifness of k 35 N/m (Egure 1) Part A Determine the incline angle 8 tor which both blocks begin to side. Express your answer in degrees to three significant figures. AX voc - O a ? Submit Request Answer Part B Find the required stretch or compression in the connecting spring for this to occur. Express your answer to three significant figures and include the appropriate units. HẢ D) ? Value mm Figure O 1 ef 1> Submit Resuest Answer Provida FeadbackA 300kg counterweight with center of mass at G is mounted on the AB crank rod of the oil pump unit. If the motor supplies a torque M = 250Nm determine the force F developed by the fixed cable attached to the end of the mobile beam DEF
- The rigid bar of negligible weight is supported as shown. The middle helical spring is made of 22 mm diameter steel spring and has an outside diameter of 100 mm with 10 turns and the two side springs are made of 32 mm steel spring and has an outside diameter of 250 mm with 8 turns. Before the load P is applied, the side springs are 25 mm longer than the middle spring. If the applied load P = 15 kN and the rigid bar remains horizontal, determine the stress in each spring. Use G = 83 GPa for steel and G = 42 GPa for bronze.Current Attempt in Progress The mass center Gof the 1400-kg rear-engine car is located as shown in the figure. Determine the normal force under each tire when the car is in equilibrium. State any assumptions. GO -1383 mm-916 mm The tolerance is + 1 in the 3rd Answers: significant digit. Normal force under each of the front tires: Nf = i Normal force under each of the rear tires: N, = iDetermine the magnitude of the pin force at A. Assume W = 675 lb, a = 2.7 ft, b = 2.0 ft, r = 9 in. r W Answer: A = i B a A D lb b