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15
Math.TechQA.Club
2026-04-02 20:17:34
53
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What does it mean when you say a matrix of of a linear transformation is relative to a standard basis?
Published on
02 Apr 2026 - 20:17
#linear-algebra
#matrices
#linear-transformations
#transpose
658
Views
Partial derivative of inverse
Published on
25 Mar 2026 - 5:05
#calculus
#matrices
#inverse
64
Views
$3\times 3$ orthogonal matrix, which doesn't consist of zeros and ones
Published on
01 Apr 2026 - 11:13
#matrices
#orthogonal-matrices
442
Views
Show that $\exp: \mathfrak h \to \mathfrak H$ is a bijection.
Published on
22 Mar 2026 - 17:02
#matrices
#lie-groups
#lie-algebras
#matrix-calculus
#matrix-exponential
128
Views
Prove that 1. $\kappa(x,y)$ is a symmetric bilinear form? 2. $\kappa([x,y],z)=\kappa(x,[y,z])$
Published on
22 Mar 2026 - 16:38
#linear-algebra
#matrices
#lie-groups
#lie-algebras
#bilinear-form
667
Views
Show that $ad(X)$ is also diagonalisable.
Published on
25 Mar 2026 - 12:53
#linear-algebra
#matrices
#lie-groups
#lie-algebras
#adjoint-operators
1.1k
Views
Matrix form of a double sum
Published on
24 Mar 2026 - 22:08
#linear-algebra
#matrices
#brownian-motion
40
Views
Given's rotation easy understanding problem
Published on
26 Mar 2026 - 15:40
#linear-algebra
#matrices
#numerical-methods
#numerical-linear-algebra
30
Views
Derivative of a vector function with respect to a vector
Published on
26 Mar 2026 - 6:33
#matrices
#derivatives
#vectors
88
Views
Calculate this $4 \times 4$ determinant
Published on
26 Mar 2026 - 1:09
#linear-algebra
#matrices
#determinant
575
Views
Block Matrix Inversion in Wikipedia
Published on
27 Mar 2026 - 3:42
#linear-algebra
#matrices
#inverse
#matrix-equations
125
Views
Elegant proof for a statement
Published on
20 Feb 2018 - 19:23
#matrices
348
Views
Zolotarev number and commuting matrices
Published on
01 Apr 2026 - 12:22
#matrices
#eigenvalues-eigenvectors
#rational-functions
#approximation-theory
#singular-values
113
Views
Basis for Matrix A
Published on
01 Apr 2026 - 21:37
#linear-algebra
#matrices
47
Views
Find all $t_1$ and $t_2$ such that $t_1L_1+t_2L_2=\vec{0}^{\,}$
Published on
01 Apr 2026 - 21:34
#linear-algebra
#matrices
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