[13] Determine the mass of each of the two cylinders if they cause a sag of S = 0.5 m when suspended from the rings at A and B. Note that S = 0 when the cylinders are removed.
[13] Determine the mass of each of the two cylinders if they cause a sag of S = 0.5 m when suspended from the rings at A and B. Note that S = 0 when the cylinders are removed.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![[13] Determine the mass of each of the two cylinders if they cause a sag of S
= 0.5 m when suspended from the rings at A and B. Note that S = 0 when the
cylinders are removed.
[14] The springs on the rope assembly are originally stretched 1 ft when 0 =
0_. Determine the vertical force F that must be applied so thate = 30°.
2 m
-1 m
2 m
2 ft-
B
1.5 m
k = 100 N/m
:= 100 N/m
k= 30 lb/ft
k 30 lb/ft
F
Prob. 13
Prob. 14](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F77eb5096-3b6f-45f2-a7f0-d33c4d69da61%2F54454e10-f801-4ac7-a9a1-e76adf700bd0%2F9p94e08_processed.jpeg&w=3840&q=75)
Transcribed Image Text:[13] Determine the mass of each of the two cylinders if they cause a sag of S
= 0.5 m when suspended from the rings at A and B. Note that S = 0 when the
cylinders are removed.
[14] The springs on the rope assembly are originally stretched 1 ft when 0 =
0_. Determine the vertical force F that must be applied so thate = 30°.
2 m
-1 m
2 m
2 ft-
B
1.5 m
k = 100 N/m
:= 100 N/m
k= 30 lb/ft
k 30 lb/ft
F
Prob. 13
Prob. 14
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