. A rigid frame is fabricated by joining the three bars with pins at B, C, and D, as shown in Fig. (a). The frame is loaded by the 1000-lb force and the 1200-lb ft couple. The supports consist of a pin at A and a roller support at E. Determine the shearing stress in the pins at B,C and D. Assume single shear. Pin diameter is 0.40 i

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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PLEASE ANSWER NUMBER 1.MECH 222-MECHANICS OF DEFORMABLE BODIES: PLEASE GIVE DETAILED SOLUTIONS AND CORRECT ANSWERS. I WILL REPORT TO BARTLEBY THOSE TUTORS WHO WILL GIVE INCORRECT ANSWERS.
Solve the problems below.
1. A rigid frame is fabricated by joining the three bars with pins at B, C, and D, as shown in Fig.
(a). The frame is loaded by the 1000-lb force and the 1200-lb ft couple. The supports consist
of a pin at A and a roller support at E. Determine the shearing stress in the pins at B,C and D.
Assume single shear. Pin diameter is 0.40 i
3 ft
1.5 ft
D
В
y
F
1.5 ft
E
1000 lb
1200 lb· ft
А
+2 ft-+2 ft-+2 ft-+<2 ft-|
Transcribed Image Text:Solve the problems below. 1. A rigid frame is fabricated by joining the three bars with pins at B, C, and D, as shown in Fig. (a). The frame is loaded by the 1000-lb force and the 1200-lb ft couple. The supports consist of a pin at A and a roller support at E. Determine the shearing stress in the pins at B,C and D. Assume single shear. Pin diameter is 0.40 i 3 ft 1.5 ft D В y F 1.5 ft E 1000 lb 1200 lb· ft А +2 ft-+2 ft-+2 ft-+<2 ft-|
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