50 KN 2m C. The force R = 600 kN is the resultant of the forces P, Q and 50 kN in figure 3. 1. Determine the value of P. 2. Determine the value of Q. 3. Determine the distance x that specifies the line of action of Q. IR 3m I
50 KN 2m C. The force R = 600 kN is the resultant of the forces P, Q and 50 kN in figure 3. 1. Determine the value of P. 2. Determine the value of Q. 3. Determine the distance x that specifies the line of action of Q. IR 3m I
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![C. The force R = 600 kN is the resultant of the forces P, Q and 50 kN in figure 3.
1. Determine the value of P.
50 KNL
2. Determine the value of Q.
3. Determine the distance x that specifies the line of action of Q.
I
I
D. The 2500 N crate shown in figure 4 is to be hoisted with a constant velocity from the hold of a
ship. Using the cable arrangement shown in the figure, determine
1. The tension in cable AB for equilibrium.
2. The tension in cable AC for equilibrium.
3. The tension in cable AD for equilibrium.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F1e0a6fc1-e4a9-4746-8d8e-973643706407%2Fd89f58a1-293d-4c60-b3a9-a7ac1961e702%2F788ay2m_processed.jpeg&w=3840&q=75)
Transcribed Image Text:C. The force R = 600 kN is the resultant of the forces P, Q and 50 kN in figure 3.
1. Determine the value of P.
50 KNL
2. Determine the value of Q.
3. Determine the distance x that specifies the line of action of Q.
I
I
D. The 2500 N crate shown in figure 4 is to be hoisted with a constant velocity from the hold of a
ship. Using the cable arrangement shown in the figure, determine
1. The tension in cable AB for equilibrium.
2. The tension in cable AC for equilibrium.
3. The tension in cable AD for equilibrium.
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