2. The Modified Atwood Machine above has the following masses: m1 3 kg and m2 =5 Kg. The coefficient of kinetic friction between the surface and mi is 0.3. What is the acceleration of the system? What is the final velocity of m2 after 2 s? Assume the system starts from rest.
2. The Modified Atwood Machine above has the following masses: m1 3 kg and m2 =5 Kg. The coefficient of kinetic friction between the surface and mi is 0.3. What is the acceleration of the system? What is the final velocity of m2 after 2 s? Assume the system starts from rest.
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
Transcribed Image Text:2. The Modified Atwood Machine above has the following masses: m1= 3 kg and m2 =5 Kg.
The coefficient of kinetic friction between the surface and m, is 0.3. What is the
acceleration of the system? What is the final velocity of m2 after 2 s? Assume the system
starts from rest.

Transcribed Image Text:m2
m1
1. The Atwood Machine above has the following masses: m1 = 3 kg and m2 = 5 kg. Find the
acceleration of the system. What is the final velocity of m2 after 1.5 s? Assume the
system starts from rest.
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