Work-Energy Theorem The two crates shown are released from rest. Their masses are mA = 42kg and mB = 35kg and the kinetic coefficient of friction between crate A and the inclined surface is µA = 0.10. What is the magnitude of the velocity of the crates when they have moved 500mm? Hint: separate FBD of crates A and B. 30° B

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Work-Energy Theorem
The two crates shown are released from rest. Their masses are mA = 42kg and mB = 35kg and the kinetic
coefficient of friction between crate A and the inclined surface is μA = 0.10. What is the magnitude of the
velocity of the crates when they have moved 500mm?
Hint: separate FBD of crates A and B.

Work-Energy Theorem
The two crates shown are released from rest. Their masses are mA = 42kg and mB = 35kg and the kinetic
coefficient of friction between crate A and the inclined surface is µA = 0.10. What is the magnitude of the
velocity of the crates when they have moved 500mm?
Hint: separate FBD of crates A and B.
A
30°
B
Transcribed Image Text:Work-Energy Theorem The two crates shown are released from rest. Their masses are mA = 42kg and mB = 35kg and the kinetic coefficient of friction between crate A and the inclined surface is µA = 0.10. What is the magnitude of the velocity of the crates when they have moved 500mm? Hint: separate FBD of crates A and B. A 30° B
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