Find a basis {b₁,b2,...} for the eigenspace corresponding to (the eigenvalue) X. -15 -32 -18 12 -56 3 12 30 36 -27 -26 -15 -32 -50 -26 23 1 2 3 b₁ b2 b3 ; λ = || = −4 Evaluate Fill in vectors in numerical order. Leave blank those that are not needed. MmlI = matrix (3,3, [36,-4,-12, 86, -6, -30,82,-10,-27]) print (MmlI); print() #Put your code below this line Language: Sage ↑

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
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Find a basis {b₁,b2, ...} for the eigenspace corresponding to (the eigenvalue) λ.
-15 -32 -18 12
-56 3 12
30
36 -27 -26
-15
-32 -50 - 26 23
; λ = −4
1 MmlI = matrix (3,3, [36,-4, -12,86, -6, -30,82,-10,-27])
2 print (MmlI); print()
3
#Put your code below this line
Evaluate
Fill in vectors in numerical order. Leave blank those that are not needed.
b₁
b2
b3
Language: Sage
↑
Transcribed Image Text:Find a basis {b₁,b2, ...} for the eigenspace corresponding to (the eigenvalue) λ. -15 -32 -18 12 -56 3 12 30 36 -27 -26 -15 -32 -50 - 26 23 ; λ = −4 1 MmlI = matrix (3,3, [36,-4, -12,86, -6, -30,82,-10,-27]) 2 print (MmlI); print() 3 #Put your code below this line Evaluate Fill in vectors in numerical order. Leave blank those that are not needed. b₁ b2 b3 Language: Sage ↑
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