s machine consists of blocks of masses m pulley without slipping. M T₁ || (a) Why must the tension 7₂ be greater than the tension 7,? This answer has not been graded yet. gover a pulley as in the figure below. The pulley is a solid cylinder (b) What is the acceleration of the system, assuming the pulley axis is frictionless? (Give the magnitude of a.) m/s² (c) Find the tensions T, and T₂- T₁=0 N 7₂=[ N
s machine consists of blocks of masses m pulley without slipping. M T₁ || (a) Why must the tension 7₂ be greater than the tension 7,? This answer has not been graded yet. gover a pulley as in the figure below. The pulley is a solid cylinder (b) What is the acceleration of the system, assuming the pulley axis is frictionless? (Give the magnitude of a.) m/s² (c) Find the tensions T, and T₂- T₁=0 N 7₂=[ N
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![An Atwood's machine consists of blocks of masses m₁ = 13.0 kg and m₂ = 17.0 kg attached by a cord running over a pulley as in the figure below. The pulley is a solid cylinder with mass M = 6.50 kg and radius r = 0.200 m. The block of mass m₂ is allowed to drop, and the cord turns the
pulley without slipping.
M
T₁
#1
|||
(a) Why must the tension 7₂ be greater than the tension T₁?
This answer has not been graded yet.
(b) What is the acceleration of the system, assuming the pulley axis is frictionless? (Give the magnitude of a.)
m/s²
(c) Find the tensions T, and T₂.
T₁ =
N
¹₂ =
N](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F6e94374b-4336-445e-abd0-efab4b53e3ae%2F5800b52f-d13f-47f1-963d-264a81365316%2F3prjqmf_processed.png&w=3840&q=75)
Transcribed Image Text:An Atwood's machine consists of blocks of masses m₁ = 13.0 kg and m₂ = 17.0 kg attached by a cord running over a pulley as in the figure below. The pulley is a solid cylinder with mass M = 6.50 kg and radius r = 0.200 m. The block of mass m₂ is allowed to drop, and the cord turns the
pulley without slipping.
M
T₁
#1
|||
(a) Why must the tension 7₂ be greater than the tension T₁?
This answer has not been graded yet.
(b) What is the acceleration of the system, assuming the pulley axis is frictionless? (Give the magnitude of a.)
m/s²
(c) Find the tensions T, and T₂.
T₁ =
N
¹₂ =
N
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