Question 6. A diagram of the collision between a moving cue ball and an initially stationary eight ball on a billiards table is given below. The collision of the billiards balls can be considered an isolated system. N E 12V/2 Cue ball v=4.00 m/s m= 0.180 kg p = 0.720 kg-m/s Eight ball O KA 40 Determine the velocity of the cue ball immediately after the collision. V=? m = 0.180 kg p = ? V = 3.20 m/s m=0.160 kg p=0.512 kg-m/s AYP

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Question 6.
A diagram of the collision between a moving cue ball and an initially stationary eight ball
on a billiards table is given below. The collision of the billiards balls can be considered
an isolated system.
W-
N
por
Cue ball
y = 4.00 m/s
m = 0.180 kg
p = 0.720 kg-m/s
V
2/1
Apple
1₂V/2
0
DALO TO 4MB x V q
Determine the velocity of the cue ball immediately after the collision.
x
000000
m = 0.180 kg
Eight ball O
+0
40°
**********
Question 7.
Classify the collision above as elastic, inelastic or super elastic.
dlad
V = 3.20 m/s
m = 0.160 kg
p=0.512 kg-m/s
AYP
SOL CANDIDA
* 12
2 no
thouse 52
Transcribed Image Text:Question 6. A diagram of the collision between a moving cue ball and an initially stationary eight ball on a billiards table is given below. The collision of the billiards balls can be considered an isolated system. W- N por Cue ball y = 4.00 m/s m = 0.180 kg p = 0.720 kg-m/s V 2/1 Apple 1₂V/2 0 DALO TO 4MB x V q Determine the velocity of the cue ball immediately after the collision. x 000000 m = 0.180 kg Eight ball O +0 40° ********** Question 7. Classify the collision above as elastic, inelastic or super elastic. dlad V = 3.20 m/s m = 0.160 kg p=0.512 kg-m/s AYP SOL CANDIDA * 12 2 no thouse 52
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