3. Find the acceleration of mass 1 and mass 2 and the tension in the rope pulling mass 1 and mass 2 if ml= 2kg and m2 = 4kg. Ignore all friction and assume that the mass of BOTH pulleys is zero. Note: In this question you CANNOT assume that acceleration is the same for both blocks. Hint: Watch the Youtube video called moving pulley problem (part 1 and part 2). %3D m2 30
3. Find the acceleration of mass 1 and mass 2 and the tension in the rope pulling mass 1 and mass 2 if ml= 2kg and m2 = 4kg. Ignore all friction and assume that the mass of BOTH pulleys is zero. Note: In this question you CANNOT assume that acceleration is the same for both blocks. Hint: Watch the Youtube video called moving pulley problem (part 1 and part 2). %3D m2 30
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![3. Find the acceleration of mass 1 and mass 2 and the tension in the rope pulling mass 1
and mass 2 if ml= 2kg and m2 = 4kg. Ignore all friction and assume that the mass of
BOTH pulleys is zero. Note: In this question you CANNOT assume that acceleration is
the same for both blocks. Hint: Watch the Youtube video called moving pulley problem
(part 1 and part 2).
m2
30](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F44b060d2-29ab-4db9-a982-5be6b592265b%2F9edcc6f3-b7d2-46e3-adcc-e84c106f28df%2Fwahgl4rp_processed.jpeg&w=3840&q=75)
Transcribed Image Text:3. Find the acceleration of mass 1 and mass 2 and the tension in the rope pulling mass 1
and mass 2 if ml= 2kg and m2 = 4kg. Ignore all friction and assume that the mass of
BOTH pulleys is zero. Note: In this question you CANNOT assume that acceleration is
the same for both blocks. Hint: Watch the Youtube video called moving pulley problem
(part 1 and part 2).
m2
30
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