We want to find functions u₁(x) and u₂(x) such that yp = U₁Y₁+U₂Y₂ is a particular solution. We can find the derivatives of these functions as follows. W U₁ = = -e-2x(2 + ex)-1 -e-3x W₂ e-x(2 + ex)-1 -e-3x

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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We have found the following Wronskians.
W = -e-³x; W₁ = -
We want to find functions u₁(x) and u₂(x) such that yp = U₁Y₁ + U₂y₂ is a particular solution. We can find the derivatives of these functions as follows.
W
=
1
W
-e-2x(2 + ex)-1
-e-3x
-e-²x(2 + ex)-¹; W₂ = e¯x(2 + ex)-¹
W₂
W
ex(2 + ex)-1
-e-3x
Transcribed Image Text:We have found the following Wronskians. W = -e-³x; W₁ = - We want to find functions u₁(x) and u₂(x) such that yp = U₁Y₁ + U₂y₂ is a particular solution. We can find the derivatives of these functions as follows. W = 1 W -e-2x(2 + ex)-1 -e-3x -e-²x(2 + ex)-¹; W₂ = e¯x(2 + ex)-¹ W₂ W ex(2 + ex)-1 -e-3x
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Follow-up Question
We have found the following complementary function for the given differential equation.
Y=₁₂x+
c₂e-2x
We have also found that for y₁ = ex, y₂ = e-²x, ‚ U₁ = In(2 + e*), and U₂ = 2 In(2 + e*) – e*, a particular solution for the equation is given by y₁ = U₁Y₁+U₂Y₂
To finish, use the fact that y = y + y is the general solution of the nonhomogeneous differential equation to solve.
y(x) =
Transcribed Image Text:We have found the following complementary function for the given differential equation. Y=₁₂x+ c₂e-2x We have also found that for y₁ = ex, y₂ = e-²x, ‚ U₁ = In(2 + e*), and U₂ = 2 In(2 + e*) – e*, a particular solution for the equation is given by y₁ = U₁Y₁+U₂Y₂ To finish, use the fact that y = y + y is the general solution of the nonhomogeneous differential equation to solve. y(x) =
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