In case (a), the baseball player stands relatively stationary and throws the ball with the initial conditions shown. In case (b), he runs with speed v = 14 ft/sec as he launches the ball with the same conditions relative to himself. What is the additional range AR of the ball in case (b)? Compare the two flight times. u = 105 ft/sec e= 20° 5.0' (a) (b) Answers: AR = i ft to = sec th = sec

University Physics Volume 1
18th Edition
ISBN:9781938168277
Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
Chapter4: Motion In Two And Three Dimensions
Section: Chapter Questions
Problem 76P: A small plane flies at 200 km/h in still air. If the wind blows directly out of the west at 50 km/h,...
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In case (a), the baseball player stands relatively stationary and throws the ball with the initial conditions shown. In case (b), he runs
with speed v = 14 ft/sec as he launches the ball with the same conditions relative to himself. What is the additional range AR of the
ball in case (b)? Compare the two flight times.
u = 105 ft/sec
9= 20°
5.0'
(a)
(b)
Answers:
AR =
i
ft
to=
sec
ty =
sec
Transcribed Image Text:In case (a), the baseball player stands relatively stationary and throws the ball with the initial conditions shown. In case (b), he runs with speed v = 14 ft/sec as he launches the ball with the same conditions relative to himself. What is the additional range AR of the ball in case (b)? Compare the two flight times. u = 105 ft/sec 9= 20° 5.0' (a) (b) Answers: AR = i ft to= sec ty = sec
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