DEFINITION Let A be an n x n matrix. Any values of A for which Av = Av has nontrivial solutions v are called eigenvalues of A. The corresponding nonzero vectors v are called eigenvectors of A. 1 = 10, v = c1(1, -4, 0) + c2(0, 0, 1), 6 -1 0 -16 -4 -1 A = where ci and c2 are con- 10 stants.

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
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use Equation in the picture to verify that λ and v are an eigenvalue/eigenvector pair for the given matrix A.

 

DEFINITION
Let A be an n x n matrix. Any values of A for which
Av = Av
has nontrivial solutions v are called eigenvalues of A. The corresponding nonzero
vectors v are called eigenvectors of A.
Transcribed Image Text:DEFINITION Let A be an n x n matrix. Any values of A for which Av = Av has nontrivial solutions v are called eigenvalues of A. The corresponding nonzero vectors v are called eigenvectors of A.
1 = 10, v = c1(1, -4, 0) + c2(0, 0, 1),
6 -1 0
-16
-4 -1
A =
where ci and c2 are con-
10
stants.
Transcribed Image Text:1 = 10, v = c1(1, -4, 0) + c2(0, 0, 1), 6 -1 0 -16 -4 -1 A = where ci and c2 are con- 10 stants.
Expert Solution
Step 1

We have given a matrix, A=6-10-1660-4-110.

Any values λ for which Av=λv has nontrivial solutions v are called eigenvalues of A. the corresponding nonzero vectors v are called eigenvectors of A.

Here λ=10, v1=1-40, v2=001.

We need to verify λ and v1, v2 are eigenvalue eigenvectors of given matrix.

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