3. Determine the maximum force P that can be applied without causing movement of the 250-lb crate that has a center of gravity at G. The coefficient of static friction at the floor is, μ,=0.4. 1.5 ft 1.5 ft

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Chapter1: Units, Trigonometry. And Vectors
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Both of them, please
3. Determine the maximum force P that can be applied without causing movement of the
250-lb crate that has a center of gravity at G. The coefficient of static friction at the floor
is, μ,=0.4.
1.5 ft 1.5 ft
P
4.5 ft
2.5 ft
3.5 ft
Transcribed Image Text:3. Determine the maximum force P that can be applied without causing movement of the 250-lb crate that has a center of gravity at G. The coefficient of static friction at the floor is, μ,=0.4. 1.5 ft 1.5 ft P 4.5 ft 2.5 ft 3.5 ft
The force P is applied to the 600-lb block when it is at rest. Determine the following:
A. The value of P required to keep the block from falling down the incline?
B. The value of P required to initiate motion up the incline?
C. The value of P required to keep it moving up?
35°
P
60°
Hs = 0.25
Hk=0.20
600 lb
Transcribed Image Text:The force P is applied to the 600-lb block when it is at rest. Determine the following: A. The value of P required to keep the block from falling down the incline? B. The value of P required to initiate motion up the incline? C. The value of P required to keep it moving up? 35° P 60° Hs = 0.25 Hk=0.20 600 lb
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