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Data from an experiment may result in a graph indicating exponential growth. This implies the formula of this growth is \(y = k{x^n}\), where \(k\) and \(n\) are constants. Using logarithms, we can ...
We develop parametric classes of covariance functions on linear networks and their extension to graphs with Euclidean edges, that is, graphs with edges viewed as line segments or more general sets ...
Analogoues of classical representation formulas for entire functions of exponential type are proved in the class of discrete analytic functions. Journal Information This monthly journal, published ...
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