A block of mass 3.00 kg is pushed up against a wall by a force P that makes an angle of 0 = 50.0° with the horizontal as shown in Figure P5.34. The coefficient of static friction between the block and the wall is 0.250. (a) Determine the possible values for the magnitude of P that allow the block to remain Figure P5.34 stationary. (b) Describe what happens if P| has a larger value and what hap- pens if it is smaller. (c) Repeat parts (a) and (b), assuming the force makes an angle of 0 13.0° with the horizontal.

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Chapter1: Units, Trigonometry. And Vectors
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A block of mass 3.00 kg is pushed up
against a wall by a force P that makes an
angle of 0 = 50.0° with the horizontal as
shown in Figure P5.34. The coefficient
of static friction between the block
and the wall is 0.250. (a) Determine
the possible values for the magnitude
of P that allow the block to remain
stationary. (b) Describe what happens
if |P| has a larger value and what hap-
pens if it is smaller. (c) Repeat parts (a) and (b), assuming the
force makes an angle of 0 =
P
Figure P5.34
13.0° with the horizontal.
Transcribed Image Text:A block of mass 3.00 kg is pushed up against a wall by a force P that makes an angle of 0 = 50.0° with the horizontal as shown in Figure P5.34. The coefficient of static friction between the block and the wall is 0.250. (a) Determine the possible values for the magnitude of P that allow the block to remain stationary. (b) Describe what happens if |P| has a larger value and what hap- pens if it is smaller. (c) Repeat parts (a) and (b), assuming the force makes an angle of 0 = P Figure P5.34 13.0° with the horizontal.
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