An object with a mass of M = 10 kg is initially at rest having compressed the spring at A (with spring constant k = 2000 N/m) a distance of 0.4 m. The inclined plane rises at 30° above the horizontal. How high up the ramp in meters (vertical height h) does the block travel before coming momentarily to rest? The coefficient of kinetic friction along the length L = 2 m. (between points B and C) is 0.4. The ramp is frictionless.
An object with a mass of M = 10 kg is initially at rest having compressed the spring at A (with spring constant k = 2000 N/m) a distance of 0.4 m. The inclined plane rises at 30° above the horizontal. How high up the ramp in meters (vertical height h) does the block travel before coming momentarily to rest? The coefficient of kinetic friction along the length L = 2 m. (between points B and C) is 0.4. The ramp is frictionless.
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An object with a mass of M = 10 kg is initially at rest having compressed the spring at A (with spring constant k = 2000 N/m) a distance of 0.4 m. The inclined plane rises at 30° above the horizontal. How high up the ramp in meters (vertical height h) does the block travel before coming momentarily to rest? The coefficient of kinetic friction along the length L = 2 m. (between points B and C) is 0.4. The ramp is frictionless.
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