3) A m2 = 10 kg block (A) sits on a flat, rough level desk which has a coefficient of friction of μ = 0.200. A string is attached to the block, then run over a pulley to the left, and finally attached to another block m1 = 10 kg and is allowed to hang freely. Lastly, another string is attached to m3 and runs over a pulley to the right, and attached to another block m3= 30 kg that is allowed to hang freely. (b) m₁ = 10 kg a. b. m₂ = 10 kg m3 = 30 kg What is the acceleration of the system? What is the tension in the 2 strings?

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Chapter1: Units, Trigonometry. And Vectors
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3) A m2 = 10 kg block (A) sits on a flat, rough level desk which has a coefficient of
friction of μ = 0.200. A string is attached to the block, then run over a pulley to the
left, and finally attached to another block m1 = 10 kg and is allowed to hang freely.
Lastly, another string is attached to m3 and runs over a pulley to the right, and
attached to another block m3= 30 kg that is allowed to hang freely.
(b)
m₁ = 10 kg
a.
b.
m₂ = 10 kg
m3 = 30 kg
What is the acceleration of the system?
What is the tension in the 2 strings?
Transcribed Image Text:3) A m2 = 10 kg block (A) sits on a flat, rough level desk which has a coefficient of friction of μ = 0.200. A string is attached to the block, then run over a pulley to the left, and finally attached to another block m1 = 10 kg and is allowed to hang freely. Lastly, another string is attached to m3 and runs over a pulley to the right, and attached to another block m3= 30 kg that is allowed to hang freely. (b) m₁ = 10 kg a. b. m₂ = 10 kg m3 = 30 kg What is the acceleration of the system? What is the tension in the 2 strings?
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