Problem 8: The line which passes through the centers of two small masses, mi rest, and mass m₁ is directed towards it with the velocity 1,0 = (2.25 m/s) ₁, as shown. = m1 √1.0 m2 176 g and m2 928 g, is parallel to the x axis. Initially mass m2 is at After colliding elastically, masses m₁ and m2 are both moving parallel to the x axis with velocities ₁ƒ = v₁ƒ ₁ and √2ƒ = v2,ƒ ₁, respectively, as shown in the second drawing. The proportionate lengths of the vectors may differ from what is shown. mi Bis m2 √21

Modern Physics
3rd Edition
ISBN:9781111794378
Author:Raymond A. Serway, Clement J. Moses, Curt A. Moyer
Publisher:Raymond A. Serway, Clement J. Moses, Curt A. Moyer
Chapter2: Relativity Ii
Section: Chapter Questions
Problem 31P: A particle of mass m moving along the x-axis with a velocity component +u collides head-on and...
Question

Collisions Problem 8

 

Part (a)  What is the x component, in meters per second, of the final velocity of mass m1? 

Part (b)  What is the x component, in meters per second, of the final velocity of mass m2 ?

Problem 8: The line which passes through the centers of two small masses, mi
rest, and mass m₁ is directed towards it with the velocity 1,0 = (2.25 m/s) ₁, as shown.
=
m1
√1.0
m2
176 g and m2 928 g, is parallel to the x axis. Initially mass m2 is at
After colliding elastically, masses m₁ and m2 are both moving parallel to the x axis with velocities ₁ƒ = v₁ƒ ₁ and √2ƒ = v2,ƒ ₁, respectively, as shown in the
second drawing. The proportionate lengths of the vectors may differ from what is shown.
mi
Bis
m2
√21
Transcribed Image Text:Problem 8: The line which passes through the centers of two small masses, mi rest, and mass m₁ is directed towards it with the velocity 1,0 = (2.25 m/s) ₁, as shown. = m1 √1.0 m2 176 g and m2 928 g, is parallel to the x axis. Initially mass m2 is at After colliding elastically, masses m₁ and m2 are both moving parallel to the x axis with velocities ₁ƒ = v₁ƒ ₁ and √2ƒ = v2,ƒ ₁, respectively, as shown in the second drawing. The proportionate lengths of the vectors may differ from what is shown. mi Bis m2 √21
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