Once again we have two sliders, masses m and m, on a horizontal air-track, so negligible horizonta vertical forces add to zero. The right hand mass is travelling to the right at speed v, being followed speed 3v. A spring between them guarantees an elastic collision. After the collision, what are the ve two sliders? Hint: what is the frame of reference that makes this into an easy problem? Speed of left hand mass after the collision

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
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Once again we have two sliders, masses m and m, on a horizontal air-track, so negligible horizontal forces, and
vertical forces add to zero. The right hand mass is travelling to the right at speed v, being followed by the other at
speed 3v. A spring between them guarantees an elastic collision. After the collision, what are the velocities of the
two sliders? Hint: what is the frame of reference that makes this into an easy problem?
Speed of left hand mass after the collision
Speed of right hand mass after the collision,
Please enter your answer in terms of the initial speeds of the two sliders and please enter very simple expressions
for the two speeds separated by a comma. Example: a,b
Transcribed Image Text:Once again we have two sliders, masses m and m, on a horizontal air-track, so negligible horizontal forces, and vertical forces add to zero. The right hand mass is travelling to the right at speed v, being followed by the other at speed 3v. A spring between them guarantees an elastic collision. After the collision, what are the velocities of the two sliders? Hint: what is the frame of reference that makes this into an easy problem? Speed of left hand mass after the collision Speed of right hand mass after the collision, Please enter your answer in terms of the initial speeds of the two sliders and please enter very simple expressions for the two speeds separated by a comma. Example: a,b
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