•60 In Fig. 13-50, two satellites, A and B, both of mass m= 125 kg. move in the same circular orbit of radius r= 7.87 x 106 m around Earth but in opposite senses of rotation and therefore on a collision Earth course. (a) Find the total mechanical en- ergy EA + ER of the two satellites + Earth system before the collision. (b) If the collision is completely inelastic so that the wreckage remains as one piece of tan- gled material (mass = 2m), find the total mechanical energy immediately after the collision. (c) Just after the collision, is the wreckage falling directly toward Earth's center or or- biting around Earth? Figure 13-50 Problem 60.

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•60 In Fig. 13-50, two satellites, A and B,
both of mass m= 125 kg. move in the
same circular orbit of radius r= 7.87 x 106
m around Earth but in opposite senses of
rotation and therefore on a collision
Earth
course. (a) Find the total mechanical en-
ergy EA + ER of the two satellites +
Earth system before the collision. (b) If
the collision is completely inelastic so that
the wreckage remains as one piece of tan-
gled material (mass = 2m), find the total
mechanical energy immediately after the collision. (c) Just after the
collision, is the wreckage falling directly toward Earth's center or or-
biting around Earth?
Figure 13-50
Problem 60.
Transcribed Image Text:•60 In Fig. 13-50, two satellites, A and B, both of mass m= 125 kg. move in the same circular orbit of radius r= 7.87 x 106 m around Earth but in opposite senses of rotation and therefore on a collision Earth course. (a) Find the total mechanical en- ergy EA + ER of the two satellites + Earth system before the collision. (b) If the collision is completely inelastic so that the wreckage remains as one piece of tan- gled material (mass = 2m), find the total mechanical energy immediately after the collision. (c) Just after the collision, is the wreckage falling directly toward Earth's center or or- biting around Earth? Figure 13-50 Problem 60.
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