b. Construct a particular solution by assuming the form (1) de+6+ and solving for the undetermined constant vectors a, 6, and e Fr(t) = 1. 31 4.

Advanced Engineering Mathematics
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ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
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04066210
section 9.6 OPEN
(t)=
b. Construct a particular solution by assuming the form (t) = de+b+ and solving for the undetermined
constant vectors a, b, and
(1)
2]-[
32(1)
4
c. Form the general solution y(t) = c(t) + (t) and impose the initial condition to obtain the solution of the
initial value problem.
Submit answer
TO
tam finished
1.
Transcribed Image Text:04066210 section 9.6 OPEN (t)= b. Construct a particular solution by assuming the form (t) = de+b+ and solving for the undetermined constant vectors a, b, and (1) 2]-[ 32(1) 4 c. Form the general solution y(t) = c(t) + (t) and impose the initial condition to obtain the solution of the initial value problem. Submit answer TO tam finished 1.
section 9.6 OPEN
Consider the initial value problem
a. Form the complementary solution to the homogeneous equation.
- +
c(t)=₁
p(t)=
-8-
+9
(0)-
31
b. Construct a particular solution by assuming the form y(t) = a + bet+cand solving for the undetermined
constant vectors a, b, and e
TO i
tam finished
Transcribed Image Text:section 9.6 OPEN Consider the initial value problem a. Form the complementary solution to the homogeneous equation. - + c(t)=₁ p(t)= -8- +9 (0)- 31 b. Construct a particular solution by assuming the form y(t) = a + bet+cand solving for the undetermined constant vectors a, b, and e TO i tam finished
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