ind all distinct eigenvalues of A. Then find the basic eigenvectors of A correspond or each eigenvalue, specify the number of basic eigenvectors corresponding to th he eigenvalue followed by the basic eigenvectors corresponding to that eigenvalue [-9 0 -4

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
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Chapter2: Second-order Linear Odes
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Find all distinct eigenvalues of A. Then find the basic eigenvectors of A corresponding to each eigenvalue.
For each eigenvalue, specify the number of basic eigenvectors corresponding to that eigenvalue, then enter
the eigenvalue followed by the basic eigenvectors corresponding to that eigenvalue.
-4
A =
-6 -1 -3
12 0 5
Number of distinct eigenvalues: 1
Number of Vectors: 1
0:
Transcribed Image Text:Find all distinct eigenvalues of A. Then find the basic eigenvectors of A corresponding to each eigenvalue. For each eigenvalue, specify the number of basic eigenvectors corresponding to that eigenvalue, then enter the eigenvalue followed by the basic eigenvectors corresponding to that eigenvalue. -4 A = -6 -1 -3 12 0 5 Number of distinct eigenvalues: 1 Number of Vectors: 1 0:
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