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A First Course in Linear Algebra, 2017a

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354 Spectral Theory<br />

⎡<br />

F<strong>in</strong>d A ⎣<br />

3<br />

−4<br />

3<br />

⎤<br />

⎦.<br />

Exercise 7.1.8 Suppose A is a 3 × 3 matrix and the follow<strong>in</strong>g <strong>in</strong>formation is available.<br />

⎡ ⎤<br />

0<br />

⎡ ⎤<br />

0<br />

A⎣<br />

−1 ⎦ = 2⎣<br />

−1 ⎦<br />

−1<br />

−1<br />

⎡<br />

F<strong>in</strong>d A ⎣<br />

2<br />

−3<br />

3<br />

⎤<br />

⎦.<br />

⎡<br />

A⎣<br />

⎡<br />

A⎣<br />

1<br />

1<br />

1<br />

−3<br />

−5<br />

−4<br />

⎤<br />

⎡<br />

⎦ = 1⎣<br />

⎤<br />

1<br />

1<br />

1<br />

⎡<br />

⎦ = −3⎣<br />

⎤<br />

⎦<br />

−3<br />

−5<br />

−4<br />

Exercise 7.1.9 F<strong>in</strong>d the eigenvalues and eigenvectors of the matrix<br />

⎡<br />

−6 −92<br />

⎤<br />

12<br />

⎣ 0 0 0 ⎦<br />

−2 −31 4<br />

One eigenvalue is −2.<br />

Exercise 7.1.10 F<strong>in</strong>d the eigenvalues and eigenvectors of the matrix<br />

⎡<br />

−2 −17<br />

⎤<br />

−6<br />

⎣ 0 0 0 ⎦<br />

1 9 3<br />

One eigenvalue is 1.<br />

Exercise 7.1.11 F<strong>in</strong>d the eigenvalues and eigenvectors of the matrix<br />

⎡<br />

9 2<br />

⎤<br />

8<br />

⎣ 2 −6 −2 ⎦<br />

−8 2 −5<br />

One eigenvalue is −3.<br />

Exercise 7.1.12 F<strong>in</strong>d the eigenvalues and eigenvectors of the matrix<br />

⎡<br />

6 76<br />

⎤<br />

16<br />

⎣ −2 −21 −4 ⎦<br />

2 64 17<br />

⎤<br />

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