a=42m/ T=28N 3. A 5.0 kg mass and a 2.0 kg mass are attached by a massless wire and hang from a frictionless pulley. The 5.0 kg mass is on the left. When released, what will be the magnitude of the acceleration of the mass on the right? Find the fension in the strirg 5.0%

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Chapter4: The Laws Of Motion
Section: Chapter Questions
Problem 70AP: Measuring coefficients of friction A coin is placed near one edge of a book lying on a table, and...
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1.5 K
2 The cart has a mass of 1.5 kg. The mass on the end of
"IS the wire is 0.5 kg. When the mass is released, the
cart accelerates to the right. What is it's rate of
acceleration. (assume surface and pulley are frictionless.)
Find the tension in the sting.
Q =245,
T-3.7N
a=4,2m5
T= 28N
3. A 5.0 kg mass and a 2.0 kg mass are attached by a massless wire
and hang from a frictionless pulley. The 5.0 kg mass is on the left.
When released, what will be the magnitude of the acceleration of
the mass on the right? Find the tension in the strirng 5.05 O
4. In the diagram at the right, a 12-kg mass is acted on
by two forces. Fi is the applied force and acts to
7.5
15.5M
a=0.6mis the right. F2 is the frictional force and acts to the
left. The magnitude of the forces is as shown.
What is the magnitude of the acceleration of the
F 12 Ka
mass?
APR
Aa
29
étv
Transcribed Image Text:1.5 K 2 The cart has a mass of 1.5 kg. The mass on the end of "IS the wire is 0.5 kg. When the mass is released, the cart accelerates to the right. What is it's rate of acceleration. (assume surface and pulley are frictionless.) Find the tension in the sting. Q =245, T-3.7N a=4,2m5 T= 28N 3. A 5.0 kg mass and a 2.0 kg mass are attached by a massless wire and hang from a frictionless pulley. The 5.0 kg mass is on the left. When released, what will be the magnitude of the acceleration of the mass on the right? Find the tension in the strirng 5.05 O 4. In the diagram at the right, a 12-kg mass is acted on by two forces. Fi is the applied force and acts to 7.5 15.5M a=0.6mis the right. F2 is the frictional force and acts to the left. The magnitude of the forces is as shown. What is the magnitude of the acceleration of the F 12 Ka mass? APR Aa 29 étv
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