A 10.0g marble slides to the left with a velocity of magnitude 0.400 m/s on the frictionless, horizontal surface of an icy New York sidewalk and has a head-on, elastic collision with a larger 30.0 g marble sliding to the right with a velocity of magnitude 0.200 m/s Let +x be to the right. (Since the collision is head-on, all the motion is along a line.) -Find the magnitude of the velocity of 30.0 g marble after the collision. -Find the magnitude of the velocity of 10.0 g marble after the collision. -Calculate the change in momentum (that is, the momentum after the collision minus the momentum before the collision) for 30.0 g marble. -Calculate the change in momentum for 10.0 g marble. -Calculate the change in kinetic energy (that is, the kinetic energy after the collision minus the kinetic energy before the collision) for 30.0 g marble. -Calculate the change in kinetic energy for 10.0 g marble
A 10.0g marble slides to the left with a velocity of magnitude 0.400 m/s on the frictionless, horizontal surface of an icy New York sidewalk and has a head-on, elastic collision with a larger 30.0 g marble sliding to the right with a velocity of magnitude 0.200 m/s Let +x be to the right. (Since the collision is head-on, all the motion is along a line.) -Find the magnitude of the velocity of 30.0 g marble after the collision. -Find the magnitude of the velocity of 10.0 g marble after the collision. -Calculate the change in momentum (that is, the momentum after the collision minus the momentum before the collision) for 30.0 g marble. -Calculate the change in momentum for 10.0 g marble. -Calculate the change in kinetic energy (that is, the kinetic energy after the collision minus the kinetic energy before the collision) for 30.0 g marble. -Calculate the change in kinetic energy for 10.0 g marble
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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A 10.0g marble slides to the left with a velocity of magnitude 0.400 m/s on the frictionless, horizontal surface of an icy New York sidewalk and has a head-on, elastic collision with a larger 30.0 g marble sliding to the right with a velocity of magnitude 0.200 m/s Let +x be to the right. (Since the collision is head-on, all the motion is along a line.)
-Find the magnitude of the velocity of 30.0 g marble after the collision.
-Find the magnitude of the velocity of 10.0 g marble after the collision.
-Calculate the change in momentum (that is, the momentum after the collision minus the momentum before the collision) for 30.0 g marble.
-Calculate the change in momentum for 10.0 g marble.
-Calculate the change in kinetic energy (that is, the kinetic energy after the collision minus the kinetic energy before the collision) for 30.0 g marble.
-Calculate the change in kinetic energy for 10.0 g marble
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