Below shaft has two rotating components as shown. Solve for FB force first. Then resolve the load components into y and z components. FA 11 kN 20° alo 400 mm 350 mm FB 25° 300 mm Gear A, 600-mm dia. B Gear B, 300-mm dia. 50-mm dia. /C
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- Two springs, as shown are to carry a load of 90 kN. The spring on the left is the larger spring. Spring specifications are as follows: wire diameter=25 mm, outside coil diameter= 230mm, no. of active coils=8; and wire diameter=20 mm, outside coil diameter= 170mm, no. of active coils=20. Take G= 79 GPa. Determine the force exerted by each spring and the stress induced in each.The pin at O can support a maximum force of 3.5 kN. What is the corresponding maximum load L which can be applied to the angled bracket AOB? A. 0.541 kN C. 2.632 kN B. 1.676 kN D. 3.091 kNThe bell-crank mechanism is in equilibrium for an applied load of P = 24 kN. Assume that a = 300 mm, b = 235 mm, and θ = 55°. The pin at B has a diameter of d = 22 mm, and the bell crank has a thickness of t = 7 mm. Calculate the bearing stress in the bell crank at pin B.
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