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Get Full Access to Calculus: Early Transcendental Functions - 6 Edition - Chapter 6.1 - Problem 2
Get Full Access to Calculus: Early Transcendental Functions - 6 Edition - Chapter 6.1 - Problem 2

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# ?In Exercises 1-8, verify the solution of the differential equation. Solution D

ISBN: 9781285774770 141

## Solution for problem 2 Chapter 6.1

Calculus: Early Transcendental Functions | 6th Edition

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Problem 2

In Exercises 1-8, verify the solution of the differential equation.

Solution                                                                Differential Equation

$$y=e^{-2 x}$$                                                       $$3 y^{\prime}+5 y=-e^{-2 x}$$

Text Transcription:

y=e^-2 x

3 y^prime+5 y=-e^-2 x

Step-by-Step Solution:

Step 1 of 5) If x is sufficiently close to c, then ƒ(x) is close to L and g(x) is close to M, from our informal definition of a limit. It is then reasonable that ƒ(x) + g(x) is close to L + M; ƒ(x) - g(x) is close to L - M; kƒ(x) is close to kL; ƒ(x)g(x) is close to LM; and ƒ(x)>g(x) is close to L>M if M is not zero. We prove the Sum Rule in Section 2.3, based on a precise definition of limit.

Step 2 of 2

##### ISBN: 9781285774770

The full step-by-step solution to problem: 2 from chapter: 6.1 was answered by , our top Calculus solution expert on 11/14/17, 10:53PM. This textbook survival guide was created for the textbook: Calculus: Early Transcendental Functions, edition: 6. The answer to “?In Exercises 1-8, verify the solution of the differential equation.Solution Differential Equation$$y=e^{-2 x}$$ $$3 y^{\prime}+5 y=-e^{-2 x}$$Text Transcription:y=e^-2 x3 y^prime+5 y=-e^-2 x” is broken down into a number of easy to follow steps, and 22 words. Since the solution to 2 from 6.1 chapter was answered, more than 251 students have viewed the full step-by-step answer. This full solution covers the following key subjects: . This expansive textbook survival guide covers 134 chapters, and 10738 solutions. Calculus: Early Transcendental Functions was written by and is associated to the ISBN: 9781285774770.

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?In Exercises 1-8, verify the solution of the differential equation. Solution D