The pilot of a jet transport brings the engines to full takeoff power before releasing the brakes as the aircraft is standing on the runway. The jet thrust remains constant, and the aircraft has a near-constant acceleration of 0.36g. If the takeoff speed is 150 km/h, calculate the distance s and time t from rest to takeoff. Answers: i t = i
The pilot of a jet transport brings the engines to full takeoff power before releasing the brakes as the aircraft is standing on the runway. The jet thrust remains constant, and the aircraft has a near-constant acceleration of 0.36g. If the takeoff speed is 150 km/h, calculate the distance s and time t from rest to takeoff. Answers: i t = i
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![The pilot of a jet transport brings the engines to full takeoff power before releasing the brakes as the aircraft is standing on the runway.
The jet thrust remains constant, and the aircraft has a near-constant acceleration of 0.36g. If the takeoff speed is 150 km/h, calculate
the distance s and time t from rest to takeoff.
Answers:
S =
i
m
t =
S](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F61f1b26b-f9fe-4a90-9dd7-a18579edcecd%2F272c7c36-521a-4b26-bb34-f94795b39699%2Fjt5wmsa_processed.jpeg&w=3840&q=75)
Transcribed Image Text:The pilot of a jet transport brings the engines to full takeoff power before releasing the brakes as the aircraft is standing on the runway.
The jet thrust remains constant, and the aircraft has a near-constant acceleration of 0.36g. If the takeoff speed is 150 km/h, calculate
the distance s and time t from rest to takeoff.
Answers:
S =
i
m
t =
S
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