Neglecting the masses of the rope and pulleys, find the following. T₁ T₁ T₂ T3 T₂ (a) Find the required value of F. 218.1✔ N m (b) Find the tensions T₁, T2, and T3. (T3 indicates the tension in the rope which attaches the pulley to the ceiling.) = 218.1 = 436.1 = 436.1 N N N (c) Find the work done by the applied force in raising the object a distance of 1.70 m. 1.43 X Your response differs from the correct answer by more than 10%. Double check your calculations. kJ

Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter5: Newton's Laws Of Motion
Section: Chapter Questions
Problem 76PQ: Jamal and Dayo are lifting a large chest, weighing 207 lb, by using the two rope handles attached to...
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The system shown in the figure below is used to lift an object of mass m = 44.5 kg. A constant downward force of
magnitude F is applied to the loose end of the rope such that the hanging object moves upward at constant speed.
Neglecting the masses of the rope and pulleys, find the following.
T₁
T3
T2
=
m
(a) Find the required value of F.
218.1
N
(b) Find the tensions T₁, T₂, and T3. (T3 indicates the tension in the rope which attaches the pulley to the
ceiling.)
T₁
218.1
=
T2
436.1
Ts
= 436.1
N
N
N
(c) Find the work done by the applied force in raising the object a distance of 1.70 m.
1.43 X
Your response differs from the correct answer by more than 10%. Double check your calculations. kJ
Transcribed Image Text:The system shown in the figure below is used to lift an object of mass m = 44.5 kg. A constant downward force of magnitude F is applied to the loose end of the rope such that the hanging object moves upward at constant speed. Neglecting the masses of the rope and pulleys, find the following. T₁ T3 T2 = m (a) Find the required value of F. 218.1 N (b) Find the tensions T₁, T₂, and T3. (T3 indicates the tension in the rope which attaches the pulley to the ceiling.) T₁ 218.1 = T2 436.1 Ts = 436.1 N N N (c) Find the work done by the applied force in raising the object a distance of 1.70 m. 1.43 X Your response differs from the correct answer by more than 10%. Double check your calculations. kJ
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