*107. ssm mmh The drawing shows Robin Hood (mass = 77.0 kg) about to escape from a dangerous situation. With one hand, he is gripping the rope that holds up a chandelier (mass = 195 kg). When he cuts the rope where it is tied to the floor, the chandelier will fall, and he will be pulled up toward a balcony above. Ignore the friction between the rope and the beams over which it slides, and find (a) the acceleration with which Robin is pulled upward and (b) the tension in the rope while Robin escapes.

College Physics
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ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
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Chapter1: Units, Trigonometry. And Vectors
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*107. ssm mmh The drawing shows
Robin Hood (mass = 77.0 kg) about to
escape from a dangerous situation. With
one hand, he is gripping the rope that
holds up a chandelier (mass = 195 kg).
When he cuts the rope where it is tied
to the floor, the chandelier will fall, and
he will be pulled up toward a balcony
above. Ignore the friction between
the rope and the beams over which it
slides, and find (a) the acceleration
with which Robin is pulled upward and
(b) the tension in the rope while Robin
escapes.
Transcribed Image Text:*107. ssm mmh The drawing shows Robin Hood (mass = 77.0 kg) about to escape from a dangerous situation. With one hand, he is gripping the rope that holds up a chandelier (mass = 195 kg). When he cuts the rope where it is tied to the floor, the chandelier will fall, and he will be pulled up toward a balcony above. Ignore the friction between the rope and the beams over which it slides, and find (a) the acceleration with which Robin is pulled upward and (b) the tension in the rope while Robin escapes.
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