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A crate with a mass of 150 kg is held in equilibrium by three ropes attached to a steel ring. B A d2 42
A crate with a mass of 150 kg is held in equilibrium by three ropes attached to a steel ring. B A d2 42 Z d1 d3 m C d4 d5 y Values for the figure are given in the following table. Note the figure may not be to scale. Variable Value 4 m d d2 6 m d3 2.5 m d4 2 m d5 1.5 m a. Determine the magnitude of the force/tension in cord A, TA. b. Determine the magnitude of the force/tension in cord B, TB. c. Determine the magnitude of the force/tension in cord C, Tc. Round your final answers to 3 significant digits/figures. The magnitude of the force/tension in cord A is The magnitude of the force/tension in cord B is The magnitude of the force/tension in cord C is N N N A oil rig tower is held in equilibrium by three ropes. The tension in cable AD is tightened until it reaches 7900 N. B d1 d2 d6 X 3 Z 0 d5 d4 E Values for the figure are given in the following table. Note the figure may not be to scale. Variable Value d1 5.5 m d2 13 m d3 13 m d4 28.5 m d5 d6 7 m 50 m a. Determine the magnitude of the force/tension in cord AB, TAB. b. Determine the magnitude of the force/tension in cord AC, TAC. c. Determine the magnitude of the force developed along the tower, FAE. > i. Hint: FAE = (0 + 0 + F k) N. Round your final answers to 3 significant digits/figures. The magnitude of the force/tension in cord TAB is The magnitude of the force/tension in cord TAC is The magnitude of the force developed along the tower FAE is NN N
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