15. A hanging mass, M₁ = 0.5 kg, is attached by a light string that runs over a frictionless pulley to a mass M₂ = 1.5 kg that is initially at rest on a frictionless ramp. The ramp is at an angle of 0 = 30.0° above the horizontal and the pulley is at the top of the ramp. Find the magnitude and direction of the acceleration of M₁.
15. A hanging mass, M₁ = 0.5 kg, is attached by a light string that runs over a frictionless pulley to a mass M₂ = 1.5 kg that is initially at rest on a frictionless ramp. The ramp is at an angle of 0 = 30.0° above the horizontal and the pulley is at the top of the ramp. Find the magnitude and direction of the acceleration of M₁.
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![PROBLEM 5.13
15. A hanging mass, M₁ = 0.5 kg, is attached by a light string that runs over a
frictionless pulley to a mass M₂ = 1.5 kg that is initially at rest on a frictionless
ramp. The ramp is at an angle of 0 = 30.0° above the horizontal and the pulley is
at the top of the ramp. Find the magnitude and direction of the acceleration of
M₁.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F826128f2-0414-4c4e-b2ee-4e6240ece7d9%2F19863049-7150-4d11-a2d2-77f60d1c0a78%2Fsekq2oj_processed.png&w=3840&q=75)
Transcribed Image Text:PROBLEM 5.13
15. A hanging mass, M₁ = 0.5 kg, is attached by a light string that runs over a
frictionless pulley to a mass M₂ = 1.5 kg that is initially at rest on a frictionless
ramp. The ramp is at an angle of 0 = 30.0° above the horizontal and the pulley is
at the top of the ramp. Find the magnitude and direction of the acceleration of
M₁.
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