You are constructing a mobile out of 5 identical toy helicopters, each of mass m = 18.4 g, 4 identical sticks (each length l = 21.5 cm, and negligible mass), and thin string of negligible mass. The distance from the left-hand side of each stick to the attachment point of the sting supporting it are x1 through x4 respectively, as shown in the diagram. The tensions in the supporting strings are T1 through T4 as shown. You want to design the mobile so that it is in static equilibrium. Part (a)  Find the tension in Newtons in the string T1.  Part (b)  Find the tension in Newtons in the string T2.   Part (c)  Find the tension in Newtons in the string T3.

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You are constructing a mobile out of 5 identical toy helicopters, each of mass m = 18.4 g, 4 identical sticks (each length l = 21.5 cm, and negligible mass), and thin string of negligible mass. The distance from the left-hand side of each stick to the attachment point of the sting supporting it are x1 through x4 respectively, as shown in the diagram. The tensions in the supporting strings are T1 through T4 as shown. You want to design the mobile so that it is in static equilibrium.

Part (a)  Find the tension in Newtons in the string T1

Part (b)  Find the tension in Newtons in the string T2

 Part (c)  Find the tension in Newtons in the string T3

 Part (d)  Find the tension in Newtons in the string T4

Part (e)  Find the distance x1, in centimeters . 

Part (f)  Find the distance x2, in centimeters. 

 Part (g)  Find the distance x3, in centimeters. 

Part (h)  Find the distance x4, in centimeters. 

T4
X4
T3
T2
T1
Transcribed Image Text:T4 X4 T3 T2 T1
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