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You can apply derivatives to real-world problems. Suppose that a cars position is y =

Calculus: Concepts and Applications | 2nd Edition | ISBN: 9781559536547 | Authors: Paul A. Foerster ISBN: 9781559536547 285

Solution for problem 24 Chapter 6-8

Calculus: Concepts and Applications | 2nd Edition

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Calculus: Concepts and Applications | 2nd Edition | ISBN: 9781559536547 | Authors: Paul A. Foerster

Calculus: Concepts and Applications | 2nd Edition

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Problem 24

You can apply derivatives to real-world problems. Suppose that a cars position is y = tan-1 t where y is in feet and t is in seconds. The velocity is the instantaneous rate of change of position, and the acceleration is the instantaneous rate of change of velocity. Find an equation for the velocity and an equation for the acceleration, both as functions of time.

Step-by-Step Solution:
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Chapter 6-8, Problem 24 is Solved
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Textbook: Calculus: Concepts and Applications
Edition: 2
Author: Paul A. Foerster
ISBN: 9781559536547

The answer to “You can apply derivatives to real-world problems. Suppose that a cars position is y = tan-1 t where y is in feet and t is in seconds. The velocity is the instantaneous rate of change of position, and the acceleration is the instantaneous rate of change of velocity. Find an equation for the velocity and an equation for the acceleration, both as functions of time.” is broken down into a number of easy to follow steps, and 65 words. Calculus: Concepts and Applications was written by and is associated to the ISBN: 9781559536547. This textbook survival guide was created for the textbook: Calculus: Concepts and Applications, edition: 2. This full solution covers the following key subjects: . This expansive textbook survival guide covers 99 chapters, and 2869 solutions. Since the solution to 24 from 6-8 chapter was answered, more than 230 students have viewed the full step-by-step answer. The full step-by-step solution to problem: 24 from chapter: 6-8 was answered by , our top Calculus solution expert on 01/25/18, 04:36PM.

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You can apply derivatives to real-world problems. Suppose that a cars position is y =

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