During an auto accident, the vehicle's air bags deploy and slow down the passengers more gently than if they had hit the windshield or steering wheel. According to safety standards, the bags produce a maximum acceleration of 60g, but lasting for only 37 ms (or less). Part A How far does a person travel in coming to a complete stop in 37 ms at a constant acceleration of 60g? Express your answer in meters. 15. ΑΣΦ ?

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Chapter4: Motion In Two And Three Dimensions
Section: Chapter Questions
Problem 82AP: A race car entering the curved part of the track at the Daytona 500 drops its speed from 85.0 m/s to...
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During an auto accident, the vehicle's air bags
deploy and slow down the passengers more gently
than if they had hit the windshield or steering
wheel. According to safety standards, the bags
produce a maximum acceleration of 60g, but
lasting for only 37 ms (or less).
Part A
How far does a person travel in coming to a complete stop in 37 ms at a constant acceleration of 60g?
Express your answer in meters.
15 ΑΣΦ
?
Transcribed Image Text:During an auto accident, the vehicle's air bags deploy and slow down the passengers more gently than if they had hit the windshield or steering wheel. According to safety standards, the bags produce a maximum acceleration of 60g, but lasting for only 37 ms (or less). Part A How far does a person travel in coming to a complete stop in 37 ms at a constant acceleration of 60g? Express your answer in meters. 15 ΑΣΦ ?
A little cat, Bella, walks along a straight line, which
we shall call the x axis, with the positive direction to
the right. As an observant scientist, you make
measurements of her motion and construct a graph
of the little feline's velocity as a function of time.
(See the figure (Figure 1).)
Part C
What is her acceleration at t = 4.0 s?
Express your answer in centimeters per second squared to two significant figures.
15 ΑΣΦ
?
Transcribed Image Text:A little cat, Bella, walks along a straight line, which we shall call the x axis, with the positive direction to the right. As an observant scientist, you make measurements of her motion and construct a graph of the little feline's velocity as a function of time. (See the figure (Figure 1).) Part C What is her acceleration at t = 4.0 s? Express your answer in centimeters per second squared to two significant figures. 15 ΑΣΦ ?
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