Let æ(t) = be a solution to the system of differential equations: x2(t) a: (t) a½(t) + 3x2(t) + 2 x2(t) -11 x1(t) -14 x1(t) If x(0) find æ(t). -2 Put the eigenvalues in ascending order when you enter æ1(t), x2(t) below. 2.

Linear Algebra: A Modern Introduction
4th Edition
ISBN:9781285463247
Author:David Poole
Publisher:David Poole
Chapter4: Eigenvalues And Eigenvectors
Section4.6: Applications And The Perron-frobenius Theorem
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Let æ(t) =
be a solution to the system of differential equations:
x2(t)
a: (t)
a½(t)
+ 3x2(t)
+ 2 x2(t)
-11 x1(t)
-14 x1(t)
If x(0)
find æ(t).
-2
Put the eigenvalues in ascending order when you enter æ1(t), x2(t) below.
2.
Transcribed Image Text:Let æ(t) = be a solution to the system of differential equations: x2(t) a: (t) a½(t) + 3x2(t) + 2 x2(t) -11 x1(t) -14 x1(t) If x(0) find æ(t). -2 Put the eigenvalues in ascending order when you enter æ1(t), x2(t) below. 2.
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