A particle is fired with a velocity vo = 32 m/s and launch angle 0 = 50° from point A. Besides gravitational acceleration, the wind applies a horizontal acceleration ax = 4.4 m/s² to the right, as shown. If d = 22 m, determine the height h of point B where the particle strikes the vertical wall. Also, determine the speed of the particle at B and the travel time from A to B. (h 19.1 m, 29.0 m/s, t = 0.97 s) UB = Wind = 00 A Ꮎ d B h

Advanced Engineering Mathematics
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ISBN:9780470458365
Author:Erwin Kreyszig
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Chapter2: Second-order Linear Odes
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This is a dynamics problem using differential equations

A particle is fired with a velocity vo = 32 m/s and launch angle 0 = 50° from point A. Besides
gravitational acceleration, the wind applies a horizontal acceleration ax = 4.4 m/s² to the right, as
shown. If d = 22 m, determine the height h of point B where the particle strikes the vertical wall.
Also, determine the speed of the particle at B and the travel time from A to B. (h
19.1 m,
29.0 m/s, t = 0.97 s)
UB
=
Wind
=
00
A
Ꮎ
d
B
h
Transcribed Image Text:A particle is fired with a velocity vo = 32 m/s and launch angle 0 = 50° from point A. Besides gravitational acceleration, the wind applies a horizontal acceleration ax = 4.4 m/s² to the right, as shown. If d = 22 m, determine the height h of point B where the particle strikes the vertical wall. Also, determine the speed of the particle at B and the travel time from A to B. (h 19.1 m, 29.0 m/s, t = 0.97 s) UB = Wind = 00 A Ꮎ d B h
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