5. A steel (G= 12.000 ksi) shaft is loaded and supported as shown in figure. Determine a. The maximum shearing stress in the shaft. Ans. b. The rotation of a section at the right end with respect to joint C. Ans. c. The rotation of a section at the right end with respect to the support. Ans. 3 ft 4 ft 85 kip-ft 6 in. 5 ft -50 kip-ft C 2 ft 4 in. -15 kip-ft 2 in 2 kip-ft E

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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5. A steel (G= 12.000 ksi) shaft is loaded and supported as shown in figure. Determine
a. The maximum shearing stress in the shaft. Ans.
b. The rotation of a section at the right end with respect to joint C. Ans.
c.
The rotation of a section at the right end with respect to the support.
Ans.
3 ft
4 ft
85 kip-ft
6 in.
5 ft
-50 kip-ft
C
2 ft
4 in.
D
-15 kip-ft
2 in.
E
-2 kip-ft
Transcribed Image Text:5. A steel (G= 12.000 ksi) shaft is loaded and supported as shown in figure. Determine a. The maximum shearing stress in the shaft. Ans. b. The rotation of a section at the right end with respect to joint C. Ans. c. The rotation of a section at the right end with respect to the support. Ans. 3 ft 4 ft 85 kip-ft 6 in. 5 ft -50 kip-ft C 2 ft 4 in. D -15 kip-ft 2 in. E -2 kip-ft
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