3. Two shuffleboard disks of equal mass, one orange and the other green, are involved in a perfectly elastic glancing collision. The green disk is initially at rest and is struck by the orange disk moving initially to the right at 5.00 m/s as in the figure below (a). After the collision, the orange disk moves in a direction that makes an angle of 37.0° with the horizontal axis while the green disk makes an angle of 53.0° with this axis as in the figure below (b). After the collision Before the collision 37.0° 5.00 m/s 53.0 Determine the speed of each disk after the collision. What kind of collision occurred? i. ii.
3. Two shuffleboard disks of equal mass, one orange and the other green, are involved in a perfectly elastic glancing collision. The green disk is initially at rest and is struck by the orange disk moving initially to the right at 5.00 m/s as in the figure below (a). After the collision, the orange disk moves in a direction that makes an angle of 37.0° with the horizontal axis while the green disk makes an angle of 53.0° with this axis as in the figure below (b). After the collision Before the collision 37.0° 5.00 m/s 53.0 Determine the speed of each disk after the collision. What kind of collision occurred? i. ii.
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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Transcribed Image Text:3. Two shuffleboard disks of equal mass, one orange and the other green, are involved in a
perfectly elastic glancing collision. The green disk is initially at rest and is struck by the
orange disk moving initially to the right at 5.00 m/s as in the figure below (a). After the
collision, the orange disk moves in a direction that makes an angle of 37.0° with the
horizontal axis while the green disk makes an angle of 53.0° with this axis as in the figure
below (b).
After the collision
Before the collision
37.0°
5.00 m/s
53.0
Determine
the speed of each disk after the collision.
What kind of collision occurred?
i.
ii.
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