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and ∗ denotes the Hadamard product (or convolution).
where the symbol stands for the Hadamard product (or convolution).
we define a new function in terms of the Hadamard product (or convolution): (1.15).
The Hadamard product (or convolution) of two analytic functions (1.2). is defined by the series (1.3).
where ∗ denotes the usual Hadamard product (or convolution) of power series.
Then the Hadamard product (or convolution) of the functions and is defined by.
Similar(34)
As matrices, images can be manipulated in R with algebraic operators such as sum, product, comparison or convolution.
The concept of the Hadamard product (or the convolution) of two analytic functions is very useful in our present study.
For various investigations involving the Hadamard product (or the convolution), the interested reader may refer to recent papers on the subject (see, for example, [68, 69] and the references cited therein).
The notations,, and are convolution product, Kronecker convolution product and Hadamard convolution product of matrix functions and, respectively.
The Hadamard product and convolution of two vectors and are denoted as and, respectively.
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