Aşağıdaki sistemin d = 0 özdeğerine karşı gelen [x1(t), Y1(t), z1 (t)] çözümü için z1(t)+z1(t) y,(t) z,(t)+z¡(t) ,(t) for the solution [¤1(t), Y1(t), z1 (t)] that corresponds to değerini bulunuz. [Evaluate the eigenvalue A = 0 of the following system]. %3| x' = -3x + 3z, y' = x - 4y + z, 2' = -2x + 2z.

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
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Aşağıdaki sistemin A = 0 özdeğerine karşı gelen [x1 (t), y1(t), z1 (t)] çözümü için
21(t)+z1(t)
Y1 (t)
1(t)+z1(t)
değerini bulunuz. [Evaluate
for the solution [x1(t), Y1(t), z1 (t)] that corresponds to
Y1(t)
the eigenvalue A = 0 of the following system).
x' = -3x + 3z,
y' = x – 4y + z,
%3D
-
-2x + 2z.
Lütfen birini seçin:
4
3
0 6
O5
Transcribed Image Text:Aşağıdaki sistemin A = 0 özdeğerine karşı gelen [x1 (t), y1(t), z1 (t)] çözümü için 21(t)+z1(t) Y1 (t) 1(t)+z1(t) değerini bulunuz. [Evaluate for the solution [x1(t), Y1(t), z1 (t)] that corresponds to Y1(t) the eigenvalue A = 0 of the following system). x' = -3x + 3z, y' = x – 4y + z, %3D - -2x + 2z. Lütfen birini seçin: 4 3 0 6 O5
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