4.15 The 480-kg bent bar ABC of uniform cross section is supported by a pin at A and a vertical cable at C. Determine the pin reactions and the force in the cable. y i. A, A - Ag 2 m T WAB=160(9.81) N C B 4 m 2 m 2 m WBC= 320(9.81) N %3!
4.15 The 480-kg bent bar ABC of uniform cross section is supported by a pin at A and a vertical cable at C. Determine the pin reactions and the force in the cable. y i. A, A - Ag 2 m T WAB=160(9.81) N C B 4 m 2 m 2 m WBC= 320(9.81) N %3!
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
Related questions
Question
![4.13 Calculate the force P that is required to hold the 600-N roller at rest on the
rough incline.
4.14 Solve Prob. 4.13 if the force P pushes rather than pulls.
4.15 The 480-kg bent bar ABC of uniform cross section is supported by a pin
at A and a vertical cable at C. Determine the pin reactions and the force in the
15°
2 m
cable.
150
LI
A
| 600 N
2 m
P
15°
2 m
WAB=160(9.81)N
T
B
4 m
B
C
2 m
2 m
WRC = 320(9.81) N
FBD
F
Fig. P4.15
FBD
Fig. P4.14](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fa6c5b0d9-1d2e-4637-9ace-e89f398deff8%2Fffc637b9-82f4-4d96-a7a9-3c14cfed376d%2F91mt3hn_processed.png&w=3840&q=75)
Transcribed Image Text:4.13 Calculate the force P that is required to hold the 600-N roller at rest on the
rough incline.
4.14 Solve Prob. 4.13 if the force P pushes rather than pulls.
4.15 The 480-kg bent bar ABC of uniform cross section is supported by a pin
at A and a vertical cable at C. Determine the pin reactions and the force in the
15°
2 m
cable.
150
LI
A
| 600 N
2 m
P
15°
2 m
WAB=160(9.81)N
T
B
4 m
B
C
2 m
2 m
WRC = 320(9.81) N
FBD
F
Fig. P4.15
FBD
Fig. P4.14
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