Solve the Linear Higher Order of differential equation using the formulas below. (D³ – 2D² + 5)(x²e-2x) Formulas: 01. D"eax = a^eax 02. Đ(D)eax = ¢ (a)eax %3D 03. Dª(eax)n % — еах (D + a)"и 04. Ф(D)(eаxи) %3 еахф(D + а)u 05. (D — а)"(еах и) %3 еах D"u |

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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Solve the Linear Higher Order of differential
equation using the formulas below.
(D³ – 2D² + 5)(x²e-2x)
Formulas:
01. D"eax = a^eax
02. Đ(D)eax = ¢ (a)eax
%3D
03. Dª(eax)n
%
— еах (D + a)"и
04. Ф(D)(eаxи) %3 еахф(D + а)u
05. (D — а)"(еах и) %3 еах D"u
|
Transcribed Image Text:Solve the Linear Higher Order of differential equation using the formulas below. (D³ – 2D² + 5)(x²e-2x) Formulas: 01. D"eax = a^eax 02. Đ(D)eax = ¢ (a)eax %3D 03. Dª(eax)n % — еах (D + a)"и 04. Ф(D)(eаxи) %3 еахф(D + а)u 05. (D — а)"(еах и) %3 еах D"u |
Solve the Linear Higher Order of differential
equation using the formulas below.
(D² – D + 3)(x In x)
Formulas:
01. D"eаx — anеаx
02. Đ(D)eax = Þ(a)eax
%3D
03. Dª(eax)n
%
— еах (D + a)"и
04. Ф(D)(eаxи) %3 еахф(D + а)u
05. (D — а)"(еах и) %3 еах D"и
Transcribed Image Text:Solve the Linear Higher Order of differential equation using the formulas below. (D² – D + 3)(x In x) Formulas: 01. D"eаx — anеаx 02. Đ(D)eax = Þ(a)eax %3D 03. Dª(eax)n % — еах (D + a)"и 04. Ф(D)(eаxи) %3 еахф(D + а)u 05. (D — а)"(еах и) %3 еах D"и
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