p= I.F. = e/P(x) dx Now solve (I.F.) y = f (I.F.) - Q(x) dx 9. Solve the linear ODE using an Integrating Factor. dy3y8e5x - = dx 10. Solve the linear ODE using an Integrating Factor. x² + 2xy = 3sin(8x) dy dx 11. Referring to #9, find the particular solution to the DE if y(0) = 6. (I.F. denotes the integrating factor)

Calculus: Early Transcendentals
8th Edition
ISBN:9781285741550
Author:James Stewart
Publisher:James Stewart
Chapter1: Functions And Models
Section: Chapter Questions
Problem 1RCC: (a) What is a function? What are its domain and range? (b) What is the graph of a function? (c) How...
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p= I.F. = e/P(x) dx
Now solve (I.F.) y = f (I.F.) - Q(x) dx
9. Solve the linear ODE using an Integrating Factor.
dy3y8e5x
-
=
dx
10. Solve the linear ODE using an Integrating Factor.
x² + 2xy = 3sin(8x)
dy
dx
11. Referring to #9, find the particular solution to the DE if y(0) = 6.
(I.F. denotes the integrating factor)
Transcribed Image Text:p= I.F. = e/P(x) dx Now solve (I.F.) y = f (I.F.) - Q(x) dx 9. Solve the linear ODE using an Integrating Factor. dy3y8e5x - = dx 10. Solve the linear ODE using an Integrating Factor. x² + 2xy = 3sin(8x) dy dx 11. Referring to #9, find the particular solution to the DE if y(0) = 6. (I.F. denotes the integrating factor)
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