The system of first order differential equations: has solution: yı(t) Y₂(t) = = [3₁ 13/12 = = -8 y₁+2 Y2, -52 yı + 12 y2, Note: You must express the answer in terms of real numbers only. y₁ (0) = -4 Y₂ (0) = -25

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
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The system of first order differential equations:
has solution:
yı(t)
Y₂(t)
=
=
[3₁
13/12
=
=
-8 yı + 2 y2,
-52 yı + 12 y2,
Note: You must express the answer in terms of real numbers only.
y₁ (0) = -4
Y₂ (0) = -25
Transcribed Image Text:The system of first order differential equations: has solution: yı(t) Y₂(t) = = [3₁ 13/12 = = -8 yı + 2 y2, -52 yı + 12 y2, Note: You must express the answer in terms of real numbers only. y₁ (0) = -4 Y₂ (0) = -25
The system of differential equations :
X₁
2
X3
V 3
has the solution Y = C₁ e¹¹¹ V₁ + C₂ e¹²² √2 + С3 e¹³²
where (in increasing order A₁ < λ₂ <^3) :
=
=
and V₁
0 and
V 2
=
=
Y'
and V3 =
=
[12
6
4
0
-8 -6
15
4
-11
Y
Transcribed Image Text:The system of differential equations : X₁ 2 X3 V 3 has the solution Y = C₁ e¹¹¹ V₁ + C₂ e¹²² √2 + С3 e¹³² where (in increasing order A₁ < λ₂ <^3) : = = and V₁ 0 and V 2 = = Y' and V3 = = [12 6 4 0 -8 -6 15 4 -11 Y
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