An unfortunate astronaut loses his grip during a spacewalk and finds himself floating away from the space station, carrying only rope and a bag of tools. First he tries to throw a rope to his fellow astronaut, but the rope is too short. In a last ditch effort, the stronaut throws his bag of tools in the direction of his motion, away from the space station. The astronaut has a mass of m₁ = 113 kg and the bag of tools has a mass of m₁ = 10.0 kg. The astronaut is moving away from he space station at v₁ = 1.80 m/s. What is the minimum final speed Ub,f of the bag of tools with espect to the space station that will keep the astronaut from rifting away forever? Ub,f= m/s

Physics for Scientists and Engineers, Technology Update (No access codes included)
9th Edition
ISBN:9781305116399
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter4: Motion In Two Dimensions
Section: Chapter Questions
Problem 4.26P: The motion of a human body through space can be modeled as the motion of a particle at the bodys...
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An unfortunate astronaut loses his grip during a spacewalk and finds himself floating away from the space station, carrying only
a rope and a bag of tools. First he tries to throw a rope to his fellow astronaut, but the rope is too short. In a last ditch effort, the
astronaut throws his bag of tools in the direction of his motion, away from the space station.
The astronaut has a mass of ma = 113 kg and the bag of tools has a mass of m
the space station at v¡ = 1.80 m/s.
=
10.0 kg. The astronaut is moving away from
What is the minimum final speed Ubf of the bag of tools with
respect to the space station that will keep the astronaut from
drifting away forever?
Ub,f =
m/s
Transcribed Image Text:An unfortunate astronaut loses his grip during a spacewalk and finds himself floating away from the space station, carrying only a rope and a bag of tools. First he tries to throw a rope to his fellow astronaut, but the rope is too short. In a last ditch effort, the astronaut throws his bag of tools in the direction of his motion, away from the space station. The astronaut has a mass of ma = 113 kg and the bag of tools has a mass of m the space station at v¡ = 1.80 m/s. = 10.0 kg. The astronaut is moving away from What is the minimum final speed Ubf of the bag of tools with respect to the space station that will keep the astronaut from drifting away forever? Ub,f = m/s
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