Consider the figure below. (Let w₁ = 130 N and W₂ = 48.5 N.) W₁ 4. W₂ (a) What is the minimum force of friction required to hold the system of the figure above in equilibrium? N (b) What coefficient of static friction between the 130-N block and the table ensures equilibrium? (Enter the minimum acceptable coefficient of friction.) (c) If the coefficient of kinetic friction between the 130-N block and the table is 0.187, what hanging weight should replace the 48.5-N weight to allow the system to move at a constant speed once it is set in motion? N

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Consider the figure below. (Let w₁ = 130 N and W₂ = 48.5 N.)
W₁
7.
W₂
(a) What is the minimum force of friction required to hold the system of the figure above in equilibrium?
N
(b) What coefficient of static friction between the 130-N block and the table ensures equilibrium? (Enter the
minimum acceptable coefficient of friction.)
(c) If the coefficient of kinetic friction between the 130-N block and the table is 0.187, what hanging weight should
replace the 48.5-N weight to allow the system to move at a constant speed once it is set in motion?
N
Transcribed Image Text:Consider the figure below. (Let w₁ = 130 N and W₂ = 48.5 N.) W₁ 7. W₂ (a) What is the minimum force of friction required to hold the system of the figure above in equilibrium? N (b) What coefficient of static friction between the 130-N block and the table ensures equilibrium? (Enter the minimum acceptable coefficient of friction.) (c) If the coefficient of kinetic friction between the 130-N block and the table is 0.187, what hanging weight should replace the 48.5-N weight to allow the system to move at a constant speed once it is set in motion? N
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