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Derivative of scalar forms

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Presentation on theme: "Derivative of scalar forms"— Presentation transcript:

1 Derivative of scalar forms

2 Derivative of matrix forms

3 Derivative of vector products of the form:

4 Useful properties of the trace operator

5 Derivative of vector and matrix products of the form:
square matrix scalar

6 Matrix inversion lemma
Inverse Matrix inversion lemma If the appropriate inverses exist:

7 Eigen decomposition of a square matrix
Assume we have a square matrix A with eigen values: And corresponding eigen vectors:

8 Eigen decomposition of a square matrix, continued
Diagonal matrix with eigen values of A Matrix of eigen vectors of A

9 Eigen decomposition of a symmetric matrix
For symmetric matrices, eigen vectors for distinct eigen values are orthogonal. All eigen values of a real symmetric matrix are real. All eigen values of a positive semi-definite matrix are non-negative: Diagonal matrix with eigen values of A Matrix of normalized eigen vectors of A

10 Some useful properties of determinant of square matrices
(nxn) eigen values of A

11 Derivative of determinant forms


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