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15
Math.TechQA.Club
2017-11-02 13:12:26
623
Views
Jordan Canonical Form matrices
Published on
02 Nov 2017 - 13:12
#linear-algebra
#matrices
#jordan-normal-form
891
Views
Differential equation and Jordan Canonical form
Published on
08 Nov 2017 - 16:14
#linear-algebra
#ordinary-differential-equations
#jordan-normal-form
920
Views
The Jordan normal form for complex conjugate eigenvalues
Published on
14 Nov 2017 - 11:32
#matrices
#eigenvalues-eigenvectors
#jordan-normal-form
1.4k
Views
Finding Jordan normal form using Smith normal form
Published on
23 Feb 2026 - 11:25
#linear-algebra
#modules
#jordan-normal-form
#vector-space-isomorphism
#smith-normal-form
632
Views
Find Jordan base for nilpotent matrix
Published on
25 Nov 2017 - 20:38
#linear-algebra
#matrices
#jordan-normal-form
176
Views
Probability of random nilpotent matrix similarity
Published on
28 Nov 2017 - 4:06
#probability
#matrices
#jordan-normal-form
371
Views
Find the jordan basis for $A$
Published on
28 Nov 2017 - 22:35
#linear-algebra
#eigenvalues-eigenvectors
#jordan-normal-form
656
Views
Is A diagonalizable? If yes find a matrix such that is a diagonal matrix, if not, find a matrix such that is Jordan
Published on
29 Nov 2017 - 6:13
#linear-algebra
#matrices
#eigenvalues-eigenvectors
#diagonalization
#jordan-normal-form
377
Views
Reordering Jordan Matrix Sub-Blocks
Published on
03 Dec 2017 - 23:55
#matrices
#jordan-normal-form
82
Views
Finding a Jordan basis - choosing the right vector
Published on
04 Dec 2017 - 0:04
#linear-algebra
#jordan-normal-form
288
Views
Proving if a certain matrix exists or not
Published on
04 Dec 2017 - 21:26
#linear-algebra
#matrices
#jordan-normal-form
129
Views
What can I deduce from a matrix by its Jordan Canonical Form?
Published on
05 Dec 2017 - 23:00
#linear-algebra
#jordan-normal-form
544
Views
Finding jordan basis
Published on
07 Dec 2017 - 2:42
#linear-algebra
#jordan-normal-form
79
Views
Find the matrix $f(A)$ for $f(z)=cos(3\pi z)$
Published on
12 Dec 2017 - 3:02
#linear-algebra
#matrices
#jordan-normal-form
51
Views
For the $3\times 3$ matrix $A$ with eigenvalues $x_1$, $x_2$, $x_3$ find idempotents matrix $E_1,E_2.E_3$ so that $A=x_1E_1+x_2E_2+x_3E_3$ .
Published on
13 Dec 2017 - 23:49
#matrices
#matrix-calculus
#matrix-decomposition
#jordan-normal-form
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