The eigenvalues are A₁ < A₂ <3 < A4, where X₁ has an eigenvector eigenvector = A = -37 15 0 0 -70 28 0 0 0 9 -3 6 0 Roo 0 0 0 ✔ V A₂ = has an

Calculus For The Life Sciences
2nd Edition
ISBN:9780321964038
Author:GREENWELL, Raymond N., RITCHEY, Nathan P., Lial, Margaret L.
Publisher:GREENWELL, Raymond N., RITCHEY, Nathan P., Lial, Margaret L.
Chapter10: Matrices
Section10.CR: Chapter 10 Review
Problem 61CR
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√3 =
eigenvector
||
=
has an eigenvector
←
->
←
I
←
||
has an
Transcribed Image Text:√3 = eigenvector || = has an eigenvector ← -> ← I ← || has an
The eigenvalues are λ₁ < A₂ < 3 < A4, where
A₁ =
has an eigenvector
eigenvector
=
-
->
ID
→
A =
||
-37 15 00
-70 28 0
0
0 9 -3
0
0 6 0
←
B
->
‹-I
X₂
||
J
has an
Transcribed Image Text:The eigenvalues are λ₁ < A₂ < 3 < A4, where A₁ = has an eigenvector eigenvector = - -> ID → A = || -37 15 00 -70 28 0 0 0 9 -3 0 0 6 0 ← B -> ‹-I X₂ || J has an
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