5. The baseball player A hits the baseball at 40 fl/s with an angle of 60° from the horizontal. When the ball is directly overhead of player B he begins to run under it. Determine the constant velocity at which B must run and the distance d in order to catch the ball. vA - 40 ft/s 15 ft

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Chapter3: Two-dimensional Kinematics
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Hi i need answer for number 5. if gravity is needed in the solution, please use 9.81m/s2

5. The baseball player A hits the baseball at 40 ft/s with an angle of 60° from the
horizontal. When the ball is directly overhead of player B he begins to run
under it. Determine the constant velocity at which B must run and the distance
d in order to catch the ball.
vA = 40 ft/s
- 15 ft
6. The basketball passes through the hoop even though it barely cleared the
hands of player B who attempted to block it. Neglecting the size of the ball,
determine the magnitude of V, or its initial velocity and the height h of the ball
when it passes over player B.
30
B
10 ft
7 ft
-25 ft-
+5 ft-
Transcribed Image Text:5. The baseball player A hits the baseball at 40 ft/s with an angle of 60° from the horizontal. When the ball is directly overhead of player B he begins to run under it. Determine the constant velocity at which B must run and the distance d in order to catch the ball. vA = 40 ft/s - 15 ft 6. The basketball passes through the hoop even though it barely cleared the hands of player B who attempted to block it. Neglecting the size of the ball, determine the magnitude of V, or its initial velocity and the height h of the ball when it passes over player B. 30 B 10 ft 7 ft -25 ft- +5 ft-
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