The three bars have a weight of W₁ = 20 lb, WB = 40 lb, and Wc = 60 lb, respectively. If the coefficients of static friction at the surfaces of contact are as shown, determine the smallest horizontal force P needed to move block A. Hint: To answer this question you need to test which blocks are slipping (A alone OR A&B together). Finally, (answer as a sentence) how would you describe the friction between the blocks that are NOT slipping? Would F=μs be applicable? 91 7989 de sa suv CCB=0.5 BBA=0.3 AμAD=0.2 P D
The three bars have a weight of W₁ = 20 lb, WB = 40 lb, and Wc = 60 lb, respectively. If the coefficients of static friction at the surfaces of contact are as shown, determine the smallest horizontal force P needed to move block A. Hint: To answer this question you need to test which blocks are slipping (A alone OR A&B together). Finally, (answer as a sentence) how would you describe the friction between the blocks that are NOT slipping? Would F=μs be applicable? 91 7989 de sa suv CCB=0.5 BBA=0.3 AμAD=0.2 P D
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Transcribed Image Text:The three bars have a weight of W₁ = 20 lb, WB = 40 lb,
and Wc = 60 lb, respectively. If the coefficients of static
friction at the surfaces of contact are as shown, determine
the smallest horizontal force P needed to move block A.
Hint: To answer this question you need to test which blocks are
slipping (A alone OR A&B together).
Finally, (answer as a sentence) how would you describe the friction
between the blocks that are NOT slipping? Would F=μs be
applicable?
91 7989 de sa suv
CCB=0.5
BBA=0.3
AμAD=0.2
P
D
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