# During a very quick stop, a car decelerates at 7.00 m/s2.

## Problem 8PE Chapter 10

Physics: Principles with Applications | 6th Edition

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Physics: Principles with Applications | 6th Edition

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Problem 8PE

During a very quick stop, a car decelerates at 7.00 m/s2. (a) What is the angular acceleration of its 0.280-m-radius tires, assuming they do not slip on the pavement? (b) How many revolutions do the tires make before coming to rest, given their initial angular velocity is 95.0 rad/s ? (c) How long does the car take to stop completely? (d) What distance does the car travel in this time? (e) What was the car’s initial velocity? (f) Do the values obtained seem reasonable, considering that this stop happens very quickly?

Step-by-Step Solution:

Step-by-step solution Step 1 of 8 (a) From relation of angular acceleration and linear acceleration,...

Step 2 of 3

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##### ISBN: 9780130606204

This full solution covers the following key subjects: Car, stop, tires, velocity, Very. This expansive textbook survival guide covers 35 chapters, and 3914 solutions. The full step-by-step solution to problem: 8PE from chapter: 10 was answered by Sieva Kozinsky, our top Physics solution expert on 03/03/17, 03:53PM. This textbook survival guide was created for the textbook: Physics: Principles with Applications, edition: 6th. The answer to “During a very quick stop, a car decelerates at 7.00 m/s2. (a) What is the angular acceleration of its 0.280-m-radius tires, assuming they do not slip on the pavement? (b) How many revolutions do the tires make before coming to rest, given their initial angular velocity is 95.0 rad/s ? (c) How long does the car take to stop completely? (d) What distance does the car travel in this time? (e) What was the car’s initial velocity? (f) Do the values obtained seem reasonable, considering that this stop happens very quickly?” is broken down into a number of easy to follow steps, and 91 words. Physics: Principles with Applications was written by Sieva Kozinsky and is associated to the ISBN: 9780130606204. Since the solution to 8PE from 10 chapter was answered, more than 706 students have viewed the full step-by-step answer.

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