Race car driver is cruising down the street at a constant speed of 28.9 m/s (~65 mph; he has a "lead" foot) when the traffic light in front of him turns red. a) If the driver's reaction time is 160 m/s, how far does he and his car travel down the road from the instant he sees the light change to the instant he begins to slow down? b) If the driver's combined reaction and movement time is 750 ms, how far do he and his car travel down the road from the instant he sees the light change to the instant he slams on her brakes and car begins to slow down? c) If the driver's average rate of acceleration is -9.5 m/s² as he slows down, how long does it take him to come to a stop (use information about his speed of 28.9 m/s but do NOT use his reaction and movement time in this computation)?

Glencoe Physics: Principles and Problems, Student Edition
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Author:Paul W. Zitzewitz
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Chapter6: Motion In Two Dimensions
Section: Chapter Questions
Problem 84A
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Race car driver is cruising down the street at a constant speed of 28.9 m/s (~65 mph; he has a “lead” foot) when the traffic light in front of him turns red.  a) If the driver’s reaction time is 160 ms, how far does he and his car travel down the road from the instant he sees the light change to the instant he begins to slow down? b) If the driver’s combined reaction and movement time is 750 ms, how far do he and his car travel down the road from the instant he sees the light change to the instant he slams on her brakes and car begins to slow down? c) If the driver’s average rate of acceleration is -9.5 m/s2 as he slows down, how long does it take him to come to a stop (use information about his speed of 28.9 m/s but do NOT use his reaction and movement time in this computation)? Please answer parts a-c. Show all work. For each question draw a diagram to show the vector/s. Show all the step and provide units in the answers. Provide answer to 2 decimal places unless stated otherwise.

Race car driver is cruising down the street at a constant speed of 28.9 m/s (~65 mph; he has a "lead"
foot) when the traffic light in front of him turns red.
a) If the driver's reaction time is 160 m/s, how far does he and his car travel down the road from the
instant he sees the light change to the instant he begins to slow down?
b) If the driver's combined reaction and movement time is 750 ms, how far do he and his car travel
down the road from the instant he sees the light change to the instant he slams on her brakes and
car begins to slow down?
c) If the driver's average rate of acceleration is -9.5 m/s² as he slows down, how long does it take
him to come to a stop (use information about his speed of 28.9 m/s but do NOT use his reaction
and movement time in this computation)?
Transcribed Image Text:Race car driver is cruising down the street at a constant speed of 28.9 m/s (~65 mph; he has a "lead" foot) when the traffic light in front of him turns red. a) If the driver's reaction time is 160 m/s, how far does he and his car travel down the road from the instant he sees the light change to the instant he begins to slow down? b) If the driver's combined reaction and movement time is 750 ms, how far do he and his car travel down the road from the instant he sees the light change to the instant he slams on her brakes and car begins to slow down? c) If the driver's average rate of acceleration is -9.5 m/s² as he slows down, how long does it take him to come to a stop (use information about his speed of 28.9 m/s but do NOT use his reaction and movement time in this computation)?
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