Your spy buddy is hanging from the wheel well of a fighter jet (bad guys in the jet making their getaway) as the jet cruises down the runway for take-off as you drive alongside in a Zamboni - souped up of course. If the jet takes-off at 72 m/s at an angle of 32°, what must your speed be to keep under the jet? If the spy keeps hanging on, how high is he 15s after take-off?

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Need help with problems 1 and 2 pls 

1.
Your spy buddy is hanging from the wheel well of a fighter jet (bad guys in the jet making their
getaway) as the jet cruises down the runway for take-off as you drive alongside in a Zamboni –
souped up of course. If the jet takes-off at 72 m/s at an angle of 32°, what must your speed be to
keep under the jet? If the spy keeps hanging on, how high is he 15s after take-off?
Height =
You buddy somehow survived (just like in the movies) and you are now deep in enemy territory.
You need to destroy the enemy weapons installation. You are on a hill75.0m high. Using an app
on your spy-phone, you launch a projectile at Vi = 132 m/s and angle 0 = 37.0°. How far
should you be to hit the enemy installation. While we are at it, find Vxi and Vyi, and the component
velocities at the highest point, Vx, and Vy at Aymax
away
Ax
VI =
Vyi
Vy =
Vxmax
Vymax
2.
Transcribed Image Text:1. Your spy buddy is hanging from the wheel well of a fighter jet (bad guys in the jet making their getaway) as the jet cruises down the runway for take-off as you drive alongside in a Zamboni – souped up of course. If the jet takes-off at 72 m/s at an angle of 32°, what must your speed be to keep under the jet? If the spy keeps hanging on, how high is he 15s after take-off? Height = You buddy somehow survived (just like in the movies) and you are now deep in enemy territory. You need to destroy the enemy weapons installation. You are on a hill75.0m high. Using an app on your spy-phone, you launch a projectile at Vi = 132 m/s and angle 0 = 37.0°. How far should you be to hit the enemy installation. While we are at it, find Vxi and Vyi, and the component velocities at the highest point, Vx, and Vy at Aymax away Ax VI = Vyi Vy = Vxmax Vymax 2.
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