Shown in the figure below is a block and track system. All locations indicated by solid black lines are frictionless. The region indicated by the tan hash is a patch of friction with coefficient k = 0.180 whose length is d = 1.15 meters. A small block of mass m = 1.48 kg is initially at rest and is compressing a spring. The spring has a spring constant of k = 45.9 N/m and an initial compression of x₁ = 0.47 meters. m V₂=? friction d Calculate all the following: The velocity of the mass after it leaves the spring, V₂ = The velocity of the mass after the frictional area, V3 = The maximum height reached by the mass, y4 = V3=? (3 m/s m/s meters Y4=?
Shown in the figure below is a block and track system. All locations indicated by solid black lines are frictionless. The region indicated by the tan hash is a patch of friction with coefficient k = 0.180 whose length is d = 1.15 meters. A small block of mass m = 1.48 kg is initially at rest and is compressing a spring. The spring has a spring constant of k = 45.9 N/m and an initial compression of x₁ = 0.47 meters. m V₂=? friction d Calculate all the following: The velocity of the mass after it leaves the spring, V₂ = The velocity of the mass after the frictional area, V3 = The maximum height reached by the mass, y4 = V3=? (3 m/s m/s meters Y4=?
Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter10: Systems Of Particles And Conservation Of Momentum
Section: Chapter Questions
Problem 79PQ
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