3 Let A = 1 Find the complex eigenvalues for A and eigenctors for each. |-1 3 Enter the eigenvalue with positive imaginary part into e_1, and enter an eigenvector for e_1 into v_1 as a column vector. Enter the eigenvalue with negative imaginary part into e_2, and enter an eigenvector for e_2 into v_2 as a column vector. Complex numbers in matlab are written in the form (a + b*i).

Advanced Engineering Mathematics
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ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
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eigenvalue question

3
Let A =
Find the complex eigenvalues for A and eigenctors for each.
-1 3]
Enter the eigenvalue with positive imaginary part into e_1, and enter an eigenvector for e_1 into v_1 as a column vector.
е
Enter the eigenvalue with negative imaginary part into e_2, and enter an eigenvector for e_2 into v_2 as a column vector.
Complex numbers in matlab are written in the form (a + b*i).
Transcribed Image Text:3 Let A = Find the complex eigenvalues for A and eigenctors for each. -1 3] Enter the eigenvalue with positive imaginary part into e_1, and enter an eigenvector for e_1 into v_1 as a column vector. е Enter the eigenvalue with negative imaginary part into e_2, and enter an eigenvector for e_2 into v_2 as a column vector. Complex numbers in matlab are written in the form (a + b*i).
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