3. A pool player is about to used a cue ball to make a rest. Each ball has a mass of 0.2 ke and the cue ball initial velocity is 6.00 m/s, after the collision the cue ball comes to a stop What is the velocity of the eight bail? Before Collision After Collision Object A Mass = Mass = Velocity = Velocity = Momentum3Dmass Total Momentum-mass x velocity Total velocity P=mv P=mv Object B Mass = Mass = Velocity = Velocity = %3D Total Momentum3Dmass Total Momentum-mass x velocity P=mv velocity P=mv Total Momentum Total Total Momentum (MaxVa)+(MoxV%3D

College Physics
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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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Total
Total Momentum
(MaxVb)+(MxVe)=
Solution: The Desired Eguation for the Problem / Solution
APoor player is about to used a cue ball to make a direct hit on the eight ball which is at
rest. Each ball has a mass of 0.2 ke and the cue ball initial velocity is 6.00 m/s, after the
colision the cue ball comes to a stop, What is the velocity of the eight ball?
Before Collision
After Collision
Object A
Mass =
Mass =
Velocity =
Velocity =
Total
Momentum=mass
Total Momentum3mass x velocity
velocity
P=mv
P=mv
Object B
Mass =
Mass =
Velocity =
Total Momentum-mass x velocity
Velocity =
Total
Momentum3Dmass
velocity
P=mv
P=mv
Total Momentum
Total
Total Momentum
(MaxVa)+(MoxVe)=
Solution: The Desired Equation for the Problem/Solution
Transcribed Image Text:Total Total Momentum (MaxVb)+(MxVe)= Solution: The Desired Eguation for the Problem / Solution APoor player is about to used a cue ball to make a direct hit on the eight ball which is at rest. Each ball has a mass of 0.2 ke and the cue ball initial velocity is 6.00 m/s, after the colision the cue ball comes to a stop, What is the velocity of the eight ball? Before Collision After Collision Object A Mass = Mass = Velocity = Velocity = Total Momentum=mass Total Momentum3mass x velocity velocity P=mv P=mv Object B Mass = Mass = Velocity = Total Momentum-mass x velocity Velocity = Total Momentum3Dmass velocity P=mv P=mv Total Momentum Total Total Momentum (MaxVa)+(MoxVe)= Solution: The Desired Equation for the Problem/Solution
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