Two shafts, each of ½½ -in. diameter, are connected by the gears shown. Knowing that G = 11.2 ×106 psi and that the shaft at Fis fixed, determine the angle through which end A rotates when a 1.5-kip-in. torque is applied at A. F 6 in. 12 in. E 8 in. 6 in. D The angle through which end A rotates is 4.5 in.
Two shafts, each of ½½ -in. diameter, are connected by the gears shown. Knowing that G = 11.2 ×106 psi and that the shaft at Fis fixed, determine the angle through which end A rotates when a 1.5-kip-in. torque is applied at A. F 6 in. 12 in. E 8 in. 6 in. D The angle through which end A rotates is 4.5 in.
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
Transcribed Image Text:Two shafts, each of ½½ -in. diameter, are connected by the gears shown. Knowing that G = 11.2 ×106 psi and that the shaft at Fis fixed,
determine the angle through which end A rotates when a 1.5-kip-in. torque is applied at A.
F
6 in.
12 in.
E
8 in.
6 in.
D
The angle through which end A rotates is
4.5 in.
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