3. The 100 kg uniform beam AB shown in the figure is supported at A by a pin and at B and C by a continuous cable which wraps around a frictionless pulley located at D. If a maximum tension force of 800 N can be developed in the cable before it breaks. What is the greatest distance at which the 6 kN force can be placed on the beam?
3. The 100 kg uniform beam AB shown in the figure is supported at A by a pin and at B and C by a continuous cable which wraps around a frictionless pulley located at D. If a maximum tension force of 800 N can be developed in the cable before it breaks. What is the greatest distance at which the 6 kN force can be placed on the beam?
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Question
3. The 100 kg uniform beam AB shown in the figure is supported at A by a pin and at B and C by a continuous cable which wraps around a frictionless pulley located at D. If a maximum tension force of 800 N can be developed in the cable before it breaks. What is the greatest distance at which the 6 kN force can be placed on the beam?
![6 kN
D
60°
OB
A
C/
-2 m-
10 m-](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F3e9e979c-1a5e-4b11-90cb-137b51525aa2%2F8f915b13-6552-40c1-9cae-d58903f0861f%2Fqwxkgd_processed.png&w=3840&q=75)
Transcribed Image Text:6 kN
D
60°
OB
A
C/
-2 m-
10 m-
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