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Approximate solutions to the potential equation a in a simply-connected 2-dimensional domain D are found using the Method of Fundamental Solutions (MFS) with sources placed ...
In this paper, we consider obtaining approximate doubly periodic wave solutions of the coupled Drinfeld–Sokolov–Wilson equation by using the Adomian decomposition method ...
Solving nonlinear systems, especially algebraic polynomial systems, is a fundamental problem which occurs frequently in various models of science and engineering like ...
The mature two-dimensional (2-D) Stoer-Bulirsch extrapolation algorithm originated by L. Monroe was used in Ising model on the square lattice analytic results in 2002. This ...
This volume is a useful reference and authoritative resource for professionals, graduate students, and researchers in mathematics, physical sciences, and engineering. ...
There is an increasing need for undergraduate students in physics to have a core set of computational tools. Most problems in physics benefit from numerical methods, and many ...
In this paper, we consider to obtain approximate Jacobi elliptic function solutions of the (1 + 1)-dimensional long wave equation by using the Adomian decomposition method. ...
The course content will initially focus on the essential basics of programming with some more advanced topics being introduced later. Examples and exercises will be given ...
The notebook shows how one can compute the number of equilibrium stages of a distillation column for the separation of a binary mixture using the Ponchon Savarit Graphical ...
The paper presents a mathematical explanation of the phenomenon observed for the Refined Least Squares method. It was found by numerical experiment with Mathematica that for ...
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