High-Order Non-uniform Grid Scheme for Numerical Analysis of Singularly Perturbed Fokker-Planck Equation. The causes of these fluctuations are
different in these problems. The problems, which may relate to the study
Decoupling schemes for predicting compressible fluid flowsIn this paper we consider two implicit
schemes for the compressible Euler equations, consisting
On differential approximations of difference schemes of
difference schemes by A. I. Zhukov and then was used to study the quality of
difference schemes approximating
СТАНДАРТНАЯ СХЕМА ДЛЯ СИНГУЛЯРНО ВОЗМУЩЕННОГО УРАВНЕНИЯ КОНВЕКЦИИ-ДИФФУЗИИ ПРИ НАЛИЧИИ ВОЗМУЩЕНИЙ. convection-diffusion equation approximated by the standard monotone finite
difference scheme on a uniform
The Numerical Analysis of the Time-Scale Shortest Queue Model Under the Dobrushin Mean-Field Approach of the solutions of the truncated singularly
perturbed Cauchy problem. We use the numerical
scheme with
different High-Order Non-uniform Grid Scheme for Numerical Analysis of Queueing System with a Small Parameter-uniform grid
scheme for numerical solving of the truncated Cauchy problem. We use
different sets of small
Numerical Analysis of Shortest Queue Problem for Time-Scale Queueing System with a Small Parameter Cauchy problem. We implement the numerical
scheme with
different sets which allows to evaluate the impact
Analytic properties and renormalization scheme dependence in variational perturbation theoryIt is shown that applying the nonperturbative method of variational
perturbation series allows us
NUMERICAL ANALYSIS OF SHORTEST QUEUE PROBLEM FOR TIME-SCALE QUEUEING SYSTEM WITH A SMALL PARAMETER-uniform grid
scheme for numerical solving of the truncated Cauchy problem. We use
different sets of small
СХЕМЫ ДЕКОМПОЗИЦИИ ОБЛАСТИ ДЛЯ ЗАДАЧИ РОБЕНА В СЛУЧАЕ СИНГУЛЯРНО ВОЗМУЩЕННОГО УРАВНЕНИЯ РЕАКЦИИ-ДИФФУЗИИ and
difference (on piecewise uniform grids condensing in the boundary layers)
schemes based on an overlapping