A 2.0-kg block was released from rest at point A. It then moves through point B until it finally stops at point C. The plane is inclined at an angle θ of 32.0o from the horizontal and the incline stands at a height h of 3.0 m. The coefficient of kinetic friction from point A to B is 0.40. Please show full solution and formula.
A 2.0-kg block was released from rest at point A. It then moves through point B until it finally stops at point C. The plane is inclined at an angle θ of 32.0o from the horizontal and the incline stands at a height h of 3.0 m. The coefficient of kinetic friction from point A to B is 0.40. Please show full solution and formula.
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A 2.0-kg block was released from rest at point A. It then moves through point B until it finally stops at point C. The plane is inclined at an angle θ of 32.0o from the horizontal and the incline stands at a height h of 3.0 m. The coefficient of kinetic friction from point A to B is 0.40.
Please show full solution and formula.
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8.0 m
B
C
(a) What is the velocity of the block at point B? (Ans.: 4.6 m)
(b) What is the coefficient of friction for the horizontal surface (from point B to C)?
(Ans.: 0.13)
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Transcribed Image Text:h
8.0 m
B
C
(a) What is the velocity of the block at point B? (Ans.: 4.6 m)
(b) What is the coefficient of friction for the horizontal surface (from point B to C)?
(Ans.: 0.13)
A,
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