Step 3: Find a possible basis for the smaller eigenvalue å1.

Linear Algebra: A Modern Introduction
4th Edition
ISBN:9781285463247
Author:David Poole
Publisher:David Poole
Chapter5: Orthogonality
Section5.3: The Gram-schmidt Process And The Qr Factorization
Problem 8BEXP
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4
-2
A =|2
2
-2
4
Step 3:
Find a possible basis for the smaller eigenvalue å1.
There are infinitely many possibilities but we will restrict ourselves to fill in only either 1 or 0.
In case you need only one vector, fill the vector on the left with numbers as instructed and fill
in each of the entries of the extra vector on the right with X's (Capital X).
Answer: a basis for the eigenspace corresponding to the smaller eigenvalue Aj is
a
d
where a=
, bD
, d=
C=
are all positive integers with no common divisor.
Transcribed Image Text:4 -2 A =|2 2 -2 4 Step 3: Find a possible basis for the smaller eigenvalue å1. There are infinitely many possibilities but we will restrict ourselves to fill in only either 1 or 0. In case you need only one vector, fill the vector on the left with numbers as instructed and fill in each of the entries of the extra vector on the right with X's (Capital X). Answer: a basis for the eigenspace corresponding to the smaller eigenvalue Aj is a d where a= , bD , d= C= are all positive integers with no common divisor.
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