In a game of billiards, ball A is given an initial velocity Vo = 3 m/sec along line DA, parallel to the axis of the table. It hits ball B and then ball C, which are both at rest. Knowing that A and C hit the sides of the table squarely at points G and E, respectively, and B hits the side obliquely at F, and assuming frictionless surfaces and perfectly elastic impacts, determine the velocity Vc with which the ball C hits the side of the table at E. 2.4m 0.6m VA 0.9m 0.9m Va=3 m/s 0.6m
In a game of billiards, ball A is given an initial velocity Vo = 3 m/sec along line DA, parallel to the axis of the table. It hits ball B and then ball C, which are both at rest. Knowing that A and C hit the sides of the table squarely at points G and E, respectively, and B hits the side obliquely at F, and assuming frictionless surfaces and perfectly elastic impacts, determine the velocity Vc with which the ball C hits the side of the table at E. 2.4m 0.6m VA 0.9m 0.9m Va=3 m/s 0.6m
University Physics Volume 1
18th Edition
ISBN:9781938168277
Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
Chapter9: Linear Momentum And Collisions
Section: Chapter Questions
Problem 9.3CYU: Check Your Understanding Suppose the second, smaller cart had been initially moving to the left....
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![In a game of billiards, ball A is given an
initial velocity Vo = 3 m/sec along line DA,
parallel to the axis of the table. It hits ball
B and then ball C, which are both at rest.
Knowing that A and C hit the sides of the
table squarely at points G and E,
respectively, and B hits the side obliquely
at F, and assuming frictionless surfaces
and perfectly elastic impacts, determine
the velocity Vc with which the ball C hits
the side of the table at E.
2.4m
0.6m
VA
0.9m
0.9m
V=3 m/s
0.6m
2.1m](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ff35421ed-0e4b-4f62-86ee-b22da9cc0d54%2F63a1d158-c4b4-45cc-a039-6591bdf6ed17%2Fu7qb3o_processed.jpeg&w=3840&q=75)
Transcribed Image Text:In a game of billiards, ball A is given an
initial velocity Vo = 3 m/sec along line DA,
parallel to the axis of the table. It hits ball
B and then ball C, which are both at rest.
Knowing that A and C hit the sides of the
table squarely at points G and E,
respectively, and B hits the side obliquely
at F, and assuming frictionless surfaces
and perfectly elastic impacts, determine
the velocity Vc with which the ball C hits
the side of the table at E.
2.4m
0.6m
VA
0.9m
0.9m
V=3 m/s
0.6m
2.1m
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