1. A table tennis ball weighing 2.45´ 10²N with diameter D= 3.8 ´ 10²m is hit at a velocity of U = 12 m/s with a back spin of angular velocity w as show in Fig. E9.16. What is the value of w if the ball is to travel on a horizontal path, not dropping due to the acceleration of gravity? (30%)
1. A table tennis ball weighing 2.45´ 10²N with diameter D= 3.8 ´ 10²m is hit at a velocity of U = 12 m/s with a back spin of angular velocity w as show in Fig. E9.16. What is the value of w if the ball is to travel on a horizontal path, not dropping due to the acceleration of gravity? (30%)
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
Transcribed Image Text:1. A table tennis ball weighing 2.45´ 10²N with diameter
D= 3.8´ 10² m is hit at a velocity of U = 12 m/s with a
back spin of angular velocity w as show in Fig. E9.16.
What is the value of w if the ball is to travel on a
horizontal path, not dropping due to the acceleration of
gravity? (30%)
0.8
C, =
0.6
D– Smooth sphere
0.4
C =
0.2
UD
Re =
= 6 x 104
1
2
3
4
@D/2U
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