10. A small ball of mass m₁ = 0.280 kg is moving at a speed of 3.55 m/s. It strikes a stationary larger ball of mass m₂ = 0.580 kg. After the collision, the balls follow the path shown in the figure, where a = 25.0° and B = 53.0°. What is the magnitude of the velocity of the smaller ball after the collision? (Neglect friction and rotational motion.)
10. A small ball of mass m₁ = 0.280 kg is moving at a speed of 3.55 m/s. It strikes a stationary larger ball of mass m₂ = 0.580 kg. After the collision, the balls follow the path shown in the figure, where a = 25.0° and B = 53.0°. What is the magnitude of the velocity of the smaller ball after the collision? (Neglect friction and rotational motion.)
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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10. A small ball of mass m₁ = 0.280 kg is moving at a speed of 3.55 m/s. It strikes a stationary larger ball of mass m₂ =
0.580 kg. After the collision, the balls follow the path shown in the figure, where a = 25.0° and 3 = 53.0°. What is the
magnitude of the velocity of the smaller ball after the collision? (Neglect friction and rotational motion.)
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Transcribed Image Text:::
2
8:
F2
10. A small ball of mass m₁ = 0.280 kg is moving at a speed of 3.55 m/s. It strikes a stationary larger ball of mass m₂ =
0.580 kg. After the collision, the balls follow the path shown in the figure, where a = 25.0° and 3 = 53.0°. What is the
magnitude of the velocity of the smaller ball after the collision? (Neglect friction and rotational motion.)
3
80
F3
$
4
gog
800
R
• WE
| SDF
//
%
5
m/s
T
G
^
6:
Vif
XCVB
MacBook Air
P
α
Y
B
V₂f
H
&
7
F7
U
N
8
DII
V
(
M
9
K
DD
O
O
P
+ 11
{
=
1219
delete
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