A mass mA= 2.0kg, moving with a velocity vA = (4.0i +5.0j -2.0k) collides with a mass mB = 3.0 kg which is initially at rest. Immediately after the collision, mass mA is observed traveling at velocity vA’ = (-2.0i + 3.0k) m/s. Find the velocity of mass mB after the collision. Assume no external forces act on the two masses.
A mass mA= 2.0kg, moving with a velocity vA = (4.0i +5.0j -2.0k) collides with a mass mB = 3.0 kg which is initially at rest. Immediately after the collision, mass mA is observed traveling at velocity vA’ = (-2.0i + 3.0k) m/s. Find the velocity of mass mB after the collision. Assume no external forces act on the two masses.
Classical Dynamics of Particles and Systems
5th Edition
ISBN:9780534408961
Author:Stephen T. Thornton, Jerry B. Marion
Publisher:Stephen T. Thornton, Jerry B. Marion
Chapter9: Dynamics Of A System Of Particles
Section: Chapter Questions
Problem 9.42P
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- A mass mA= 2.0kg, moving with a velocity vA = (4.0i +5.0j -2.0k) collides with a mass mB = 3.0 kg which is initially at rest. Immediately after the collision, mass mA is observed traveling at velocity vA’ = (-2.0i + 3.0k) m/s. Find the velocity of mass mB after the collision. Assume no external forces act on the two masses.
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