The present method has several steps. The first step starts for each unknown with a random value in the interval for the unknown. The second step starts at a point near the best point obtained in step one; specifically, for each unknown variable, the second step starts with a value which is, say, th
One-step recursive method for solving systems of differential equations
β Scribed by Luis Lara
- Publisher
- Elsevier Science
- Year
- 2008
- Tongue
- English
- Weight
- 145 KB
- Volume
- 216
- Category
- Article
- ISSN
- 0377-0427
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β¦ Synopsis
In this work an iteration one-step method to integrate systems of nonlinear ordinary differential equations with initial values is presented
π SIMILAR VOLUMES
In this paper, a one-step optimal approach is proposed to improve the computational efficiency of the homotopy analysis method (HAM) for nonlinear problems. A generalized homotopy equation is first expressed by means of a unknown embedding function in Taylor series, whose coefficient is then determi
variational iteration method System of partial differential equations System of integral equations a b s t r a c t In recent years a lot of attention from researchers has been attracted to the various aspects of the well known He's variational iteration method. This method is a very powerful method