O 18 A tennis ball of mass m is dropped from rest at point A, covering a height H, above a frictionless inclined plane at an angle 45 degrees to the horizontal as shown below. The moment the ball hits the inclined plane, it bounces horizontally at point B with the same speed with which it struck the plane and strikes the plane again at point C. In terms of g and H, determine the following quantities: B. The time the ball is in flight between points B and C * Notes: m is the mass of the tennis ball. H is the distance between A and B. L is the straight line distance from point B to C. g is the acceleration due to gravity. t = = t = H 28 8 4H 8 8.H 8 No Answer A H B Vy Vox L voy = 0 Vy= V0x 0 = 45° с

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Chapter5: Energy
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O
18
A tennis ball of mass m is dropped from rest at point A,
covering a height H, above a frictionless inclined plane at
an angle 45 degrees to the horizontal as shown below. The
moment the ball hits the inclined plane, it bounces
horizontally at point B with the same speed with which it
struck the plane and strikes the plane again at point C. In
terms of g and H, determine the following quantities:
B. The time the ball is in flight between points B and C *
Notes: m is the mass of the tennis ball. H is the distance between A
and B. L is the straight line distance from point B to C. g is the
acceleration due to gravity.
t =
=
t =
H
28
8
4H
8
8.H
8
No Answer
A
H
B
Vy
Vox
L
voy = 0
Vy= V0x
0 = 45°
с
Transcribed Image Text:O 18 A tennis ball of mass m is dropped from rest at point A, covering a height H, above a frictionless inclined plane at an angle 45 degrees to the horizontal as shown below. The moment the ball hits the inclined plane, it bounces horizontally at point B with the same speed with which it struck the plane and strikes the plane again at point C. In terms of g and H, determine the following quantities: B. The time the ball is in flight between points B and C * Notes: m is the mass of the tennis ball. H is the distance between A and B. L is the straight line distance from point B to C. g is the acceleration due to gravity. t = = t = H 28 8 4H 8 8.H 8 No Answer A H B Vy Vox L voy = 0 Vy= V0x 0 = 45° с
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