Review | Constants A student suspends a chain consisting of three links, each of mass m 0.250 kg, from a light rope as shown in (Figure 1). The rope is attached to the top link of the chain, which does not swing. She pulls upward on the rope, so that the rope applies an upward force of 9.50 N to the chain. (a) Draw a free-body diagram for the entire chain, considered as an object, and one for each of the three links. (b) Use the diagrams of part (a) and Newton's laws to find (i) the acceleration of the chain, (ii) the force exerted by the top link. on the middle link, and (iii) the force exerted by the middle link on the bottom link. Treat the rope as massless. Part A There are four objects of interest in this problem: the chain as a whole and the three individual links. For each of these four objects, identify the external forces acting on them. Besides the force of gravity, you should include only forces exerted by other objects that fouch the object in question. Throughout this problem, assume the positive y-axis points upwards. Drag the appropriate forces to their respective bins. ▸ View Available Hint(s) Figure Rope 1 of 1 Fa un 2: force of link 3 on link 2 F2 on 3: force of link 2 on link 3 F₂ 2 on 1- force of link 2 on link 1 F2: force of link 1 on link 2 3mg weight of entire chain T: tension force mg weight of single link Link! Chain Link 2 Link 3 Link 1 Link 2 Link 3 Reset Help 1:36 PM

College Physics
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Chapter1: Units, Trigonometry. And Vectors
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Review | Constants
A student suspends a chain consisting of three links, each of
mass m 0.250 kg, from a light rope as shown in
(Figure 1). The rope is attached to the top link of the chain,
which does not swing. She pulls upward on the rope, so that
the rope applies an upward force of 9.50 N to the chain. (a)
Draw a free-body diagram for the entire chain, considered as
an object, and one for each of the three links. (b) Use the
diagrams of part (a) and Newton's laws to find (i) the
acceleration of the chain, (ii) the force exerted by the top link.
on the middle link, and (iii) the force exerted by the middle
link on the bottom link. Treat the rope as massless.
Part A
There are four objects of interest in this problem: the chain as a whole and the three individual links. For each of these four objects, identify the
external forces acting on them. Besides the force of gravity, you should include only forces exerted by other objects that fouch the object in
question. Throughout this problem, assume the positive y-axis points upwards.
Drag the appropriate forces to their respective bins.
▸ View Available Hint(s)
Figure
Rope
1 of 1
Fa un 2: force of link 3 on link 2
F2 on 3: force of link 2 on link 3
F₂
2 on 1-
force of link 2 on link 1
F2: force of link 1 on link 2
3mg weight of entire chain
T: tension force
mg weight of single link
Link!
Chain
Link 2
Link 3
Link 1
Link 2
Link 3
Reset
Help
1:36 PM
Transcribed Image Text:Review | Constants A student suspends a chain consisting of three links, each of mass m 0.250 kg, from a light rope as shown in (Figure 1). The rope is attached to the top link of the chain, which does not swing. She pulls upward on the rope, so that the rope applies an upward force of 9.50 N to the chain. (a) Draw a free-body diagram for the entire chain, considered as an object, and one for each of the three links. (b) Use the diagrams of part (a) and Newton's laws to find (i) the acceleration of the chain, (ii) the force exerted by the top link. on the middle link, and (iii) the force exerted by the middle link on the bottom link. Treat the rope as massless. Part A There are four objects of interest in this problem: the chain as a whole and the three individual links. For each of these four objects, identify the external forces acting on them. Besides the force of gravity, you should include only forces exerted by other objects that fouch the object in question. Throughout this problem, assume the positive y-axis points upwards. Drag the appropriate forces to their respective bins. ▸ View Available Hint(s) Figure Rope 1 of 1 Fa un 2: force of link 3 on link 2 F2 on 3: force of link 2 on link 3 F₂ 2 on 1- force of link 2 on link 1 F2: force of link 1 on link 2 3mg weight of entire chain T: tension force mg weight of single link Link! Chain Link 2 Link 3 Link 1 Link 2 Link 3 Reset Help 1:36 PM
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