eration of 2.2 m/s. 5. A 16,000 lb airplane starts from rest and has a uniform acceleration of 4 ft/s. If it requires a speed of 90 ft/s to take off, find: a the minimum run for the take-off. b. the minimum time from rest to take-off. c. the net engine thrust available for the said acceleration.

University Physics Volume 1
18th Edition
ISBN:9781938168277
Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
Chapter3: Motion Along A Straight Line
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a 16000 lb airplane starts from rest and has uniform acceleration of 4 ft/s^2. if it requires a speed of 90 ft/s to take off, find:

a. the minimum run for the take off.

b. the minimum time from rest to take off.

c. the net engine thrust avialable for the said acceleration.

tion of 2.2 m/s".
5. A 16,000 Ib airplane starts from rest and has a uniform acceleration of 4 ft/s. If it
requires a speed of 90 ft/s to take off, find:
a. the minimum run for the take-off.
b. the minimum time from rest to take-off.
c. the net engine thrust available for the said acceleration.
Transcribed Image Text:tion of 2.2 m/s". 5. A 16,000 Ib airplane starts from rest and has a uniform acceleration of 4 ft/s. If it requires a speed of 90 ft/s to take off, find: a. the minimum run for the take-off. b. the minimum time from rest to take-off. c. the net engine thrust available for the said acceleration.
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