ì A pilot of mass m= 70 kg in a jet aircraft executes a loop-the-loop, as shown in Figure. In this maneuver, the aircraft moves in a vertical circle of radius =3.00 km at a constant speed of 250 m/s. (a) Calculate the centripetal accelaration of the aircraft. Determine the force exerted by the seat on the pilot (b) at the bottom of the loop and (c) at the top of the loop. g=9.8 m/s?

Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter6: Applications Of Newton’s Laws Of Motion
Section: Chapter Questions
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ì A pilot of mass m= 70 kg in a jet aircraft executes a
loop-the-loop, as shown in Figure. In this maneuver, the aircraft
moves in a vertical circle of radius =3.00 km at a constant speed
of 250 m/s. (a) Calculate the centripetal accelaration of the aircraft.
Determine the force exerted by the seat on the pilot (b) at the
bottom of the loop and (c) at the top of the loop.
g=9.8 m/s?
Transcribed Image Text:ì A pilot of mass m= 70 kg in a jet aircraft executes a loop-the-loop, as shown in Figure. In this maneuver, the aircraft moves in a vertical circle of radius =3.00 km at a constant speed of 250 m/s. (a) Calculate the centripetal accelaration of the aircraft. Determine the force exerted by the seat on the pilot (b) at the bottom of the loop and (c) at the top of the loop. g=9.8 m/s?
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