A particle of mass m = 1.1 kg and initial velocity v0 = 13 m/s directly to the right, strikes an initially stationary particle of mass M = 17.5 kg. The collision is inelastic. Afterwards, particle m is observed moving at a speed v = 4.5 m/s, at an angle θ = 59° from its initial direction of motion, and particle M is observed moving at a speed V, as shown in the figure. - Find V, the final speed of particle M, in m/s. (V=?) -  What happens to V if m << M?  -What happens to V if m >> M?  -What happens to V as v → 0?

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 particle of mass m = 1.1 kg and initial velocity v0 = 13 m/s directly to the right, strikes an initially stationary particle of mass M = 17.5 kg. The collision is inelastic. Afterwards, particle m is observed moving at a speed v = 4.5 m/s, at an angle θ = 59° from its initial direction of motion, and particle M is observed moving at a speed V, as shown in the figure.

- Find V, the final speed of particle M, in m/s. (V=?)

-  What happens to V if m << M

-What happens to V if m >> M

-What happens to V as v → 0? 

-Write an expression for V as v0 → 0. You may assume terms like v0/v vanish. 

-Write an expression for V if θ = 0. Assume the balls do not stick together. 

-Write an expression for V if θ = 180°. 

m
М
V
Transcribed Image Text:m М V
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