If yp = e is a particular solution of the nonhomogeneous differential equation y" + 64y = 68e2 and yc = C1 cos(8x) + c2 sin(8x) is a complementary solution of the associated homogeneous differential equation. Then, the general solution of the nonhomogeneous differential equation is Select one: O None of the others O y = c1 cos(8x)+ c2 sin(8x) -e-2 y = c1 cos(8x)+ c2 sin(8x) - e2 O y = c1 cos(8x)+ c2 sin(8x) +e -2z O y = C1 cos(8x)+ c2 sin(8x) + e2z

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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If yp = e2 is a particular solution of the nonhomogeneous differential equation
y" + 64y = 68e2"
and yc = c1 cos(8x) + c2 sin(8x) is a complementary solution of the associated homogeneous differential equation. Then, the general
solution of the nonhomogeneous differential equation is
Select one:
O None of the others
O y = c1 cos(8x)+ c2 sin(8x)
-e-2z
y = c1 cos(8x)+ c2 sin(8x) – e2
O y = c1 cos(8x)+ c2 sin(8x) + e
-2z
O y = c1 cos(8x)+ c2 sin(8x) + e²=
Transcribed Image Text:If yp = e2 is a particular solution of the nonhomogeneous differential equation y" + 64y = 68e2" and yc = c1 cos(8x) + c2 sin(8x) is a complementary solution of the associated homogeneous differential equation. Then, the general solution of the nonhomogeneous differential equation is Select one: O None of the others O y = c1 cos(8x)+ c2 sin(8x) -e-2z y = c1 cos(8x)+ c2 sin(8x) – e2 O y = c1 cos(8x)+ c2 sin(8x) + e -2z O y = c1 cos(8x)+ c2 sin(8x) + e²=
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