2) In Figure, mass m¡ collision with m,= 4 kg that is initially at rest. (a) Find the velocity of m, (b) Find the velocity of m, after the collision. (c) Find the maximum height h to which m, rises after the collision. 2 kg with a velocity v,=10 m/s moving in x direction makes elastic after the collision. =10 m/s V2=0 m2

Principles of Physics: A Calculus-Based Text
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Author:Raymond A. Serway, John W. Jewett
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Chapter8: Momentum And Collisions
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In Figure, mass m1= 2 kg with a velocity v1i =10 m/s moving in x direction makes elastic collision with m2= 4 kg that is initially at rest.
(a) Find the velocity of m1 after the collision.
(b) Find the velocity of m2 after the collision.
(c) Find the maximum height h to which m2 rises after the collision

2) In Figure, mass m, = 2 kg with a velocity v=10 m/s moving in x direction makes elastic
collision with m,= 4 kg that is initially at rest.
(a) Find the velocity of m, after the collision.
(b) Find the velocity of m, after the collision.
(c) Find the maximum height h to which m, rises after the collision.
h
V=10 m/s
m2
Transcribed Image Text:2) In Figure, mass m, = 2 kg with a velocity v=10 m/s moving in x direction makes elastic collision with m,= 4 kg that is initially at rest. (a) Find the velocity of m, after the collision. (b) Find the velocity of m, after the collision. (c) Find the maximum height h to which m, rises after the collision. h V=10 m/s m2
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