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Calculation of ambiguity function based on the method of numerical integration of rapidly oscillating functions large number of local extrema on a certain interval. Numerical integration of such functions is a tricky

On the quadratization of the integrals for the many-body problem that preserves all its algebraic integrals is proposed herein. We introduced additional variables, namely

On a set of tests for numerical methods of integratingdifferential equations, based on the Calogero systemBased on the completely integrable Calogero dynamical system, whichdescribes the one

Integration of Highly Oscillatory Functions differential equation (ODE) and thus obtain integral values. This method make the system of linear equations

Numerical Algorithm for Design of Stability Polynomials for the First Order Methods domain is shown. Numerical results are given.

Impact of IW-induced currents on submersed pillars of numerical integration of fully nonlinear two-dimensional (vertical plane) system of equations

First-Order Methods With Extended Stability Regions for Solving Electric Circuit ProblemsStability control of Runge-Kutta numerical schemes is studied to increase efficiency of in

Special functions as solutions to the Euler-Poisson-Darboux equation with a fractional power of the Bessel operator the technique of the Meijer integral transform and its modification, fundamental solutions to these equations

A fractional equation with left-sided fractional Bessel derivatives of Gerasimov-Caputo type to equations with fractional powers of the Bessel operator using the Meijer integral transform

Numerical analysis of eikonal equation devices, such as Maxwell and Luneburg lenses. The eikonal equation, which was transformed to the ODE

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