In the figure below, two blocks, m₁ and m2, are connected by a massless and frictionless pulley with each mass on a different incline. The mass m₁ = 9.13000 kg is on an incline of angle A = 72.00000 degrees with coefficients of static and kinetic friction, sl 0.65000 and 1=0.45000. The mass m₂ = 16.87000 kg is on an incline of angle B = 41.00000 degrees with coefficients of static and kinetic friction, s2 = 0.50000 and 2 = 0.25000 and is moving down the incline. (The figure is not drawn to scale!) A Take the direction of motion to be positive. Remember, if you want to get the correct answers, you will need to use g = 9.80 m/s²! m₂ B

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Chapter1: Units, Trigonometry. And Vectors
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In the figure below, two blocks, m₁ and m2, are connected by a massless and frictionless pulley with each mass on a different incline. The mass m₁ = 9.13000 kg is on an incline of
angle A = 72.00000 degrees with coefficients of static and kinetic friction, s1 = 0.65000 and k1= 0.45000. The mass m₂ = 16.87000 kg is on an incline of angle B =
41.00000 degrees with coefficients of static and kinetic friction, 2 = 0.50000 and 2 = 0.25000 and is moving down the incline. (The figure is not drawn to scale!)
m₁
A
m₂
Take the direction of motion to be positive.
Remember, if you want to get the correct answers, you will need to use g = 9.80 m/s²!
What is the component of the acceleration of m₁ along its incline, in m/s² and to three decimal places?
B
Transcribed Image Text:In the figure below, two blocks, m₁ and m2, are connected by a massless and frictionless pulley with each mass on a different incline. The mass m₁ = 9.13000 kg is on an incline of angle A = 72.00000 degrees with coefficients of static and kinetic friction, s1 = 0.65000 and k1= 0.45000. The mass m₂ = 16.87000 kg is on an incline of angle B = 41.00000 degrees with coefficients of static and kinetic friction, 2 = 0.50000 and 2 = 0.25000 and is moving down the incline. (The figure is not drawn to scale!) m₁ A m₂ Take the direction of motion to be positive. Remember, if you want to get the correct answers, you will need to use g = 9.80 m/s²! What is the component of the acceleration of m₁ along its incline, in m/s² and to three decimal places? B
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