Answer: 3. A fighter jet lands on the deck of an aircraft carrier. It touches down with an initial velocity of 70.4 m/s and comes to a complete stop over a distance of 197.4 m. A. What is the acceleration needed to completely stop this jet? B. How much time it would take the jet to stop? Given Solution: a = v²-v² %3D 2d d= a= vi= vf

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter2: Motion In One Dimension
Section: Chapter Questions
Problem 43P: A ball starts from rest and accelerates at 0.500 m/s2 while moving down an inclined plane 9.00 m...
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3. A fighter jet lands on the deck of an aircraft carrier. It touches down with an initial
velocity of 70.4 m/s and comes to a complete stop over a distance of 197.4 m.
A. What is the acceleration needed to completely stop this jet?
B. How much time it would take the jet to stop?
Given
Solution: a = vf-v²
2d
d=
a=
vi=
vf
t=
a.
Answer:
Transcribed Image Text:Answer: 3. A fighter jet lands on the deck of an aircraft carrier. It touches down with an initial velocity of 70.4 m/s and comes to a complete stop over a distance of 197.4 m. A. What is the acceleration needed to completely stop this jet? B. How much time it would take the jet to stop? Given Solution: a = vf-v² 2d d= a= vi= vf t= a. Answer:
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