AbstractIn this paper, we used an efficient algorithm to obtain an analytic approximation for Volterra's model for population growth of a species in a closed system. The numerical solutions are obtained by combining homotopy perturbation method (HPM) and Padé technique. The approximate solutions are shown graphically. The results show that HPM–Padé tecnique is an appropriate method in solving the nonlinear equations
AbstractIn this article a robust approach for solving mixed nonlinear Volterra–Fredholm type integra...
In this study, Homotopy Perturbation Method (HPM) is used to obtain the analytically exact solution ...
AbstractThis paper is an elementary introduction to the concepts of the homotopy perturbation method...
The work of J. J. Nieto has been partially supported by the Agencia Estatal de Investigación (AEI) o...
AbstractHe’s homotopy perturbation method is applied for obtaining approximate analytical solutions ...
AbstractIn this paper, we introduce a new modification of homotopy perturbation method (NHPM) to obt...
AbstractIn many papers, Homotopy perturbation method has been presented as a method for solving non-...
AbstractIn this letter, the solutions of some nonlinear differential equations have been obtained by...
AbstractIn this paper, a new reliable technique for solving systems of Volterra integral equations o...
AbstractIn this paper, new homotopy perturbation method (NHPM) (Biazar et al., 2007) is applied to o...
AbstractThe homotopy perturbation method is applied to the nonlinear oscillators. Only one iteration...
Abstract: In this paper, the couette flow of fluid with variable viscosity is studied analytically b...
AbstractIn this paper, a new homotopy perturbation method (NHPM) is introduced for obtaining solutio...
AbstractIn this study, an efficient method is presented for solving nonlinear two-dimensional Volter...
In this paper the Sumudo transform is coupled with homotopy Perturbation Method to have the numerica...
AbstractIn this article a robust approach for solving mixed nonlinear Volterra–Fredholm type integra...
In this study, Homotopy Perturbation Method (HPM) is used to obtain the analytically exact solution ...
AbstractThis paper is an elementary introduction to the concepts of the homotopy perturbation method...
The work of J. J. Nieto has been partially supported by the Agencia Estatal de Investigación (AEI) o...
AbstractHe’s homotopy perturbation method is applied for obtaining approximate analytical solutions ...
AbstractIn this paper, we introduce a new modification of homotopy perturbation method (NHPM) to obt...
AbstractIn many papers, Homotopy perturbation method has been presented as a method for solving non-...
AbstractIn this letter, the solutions of some nonlinear differential equations have been obtained by...
AbstractIn this paper, a new reliable technique for solving systems of Volterra integral equations o...
AbstractIn this paper, new homotopy perturbation method (NHPM) (Biazar et al., 2007) is applied to o...
AbstractThe homotopy perturbation method is applied to the nonlinear oscillators. Only one iteration...
Abstract: In this paper, the couette flow of fluid with variable viscosity is studied analytically b...
AbstractIn this paper, a new homotopy perturbation method (NHPM) is introduced for obtaining solutio...
AbstractIn this study, an efficient method is presented for solving nonlinear two-dimensional Volter...
In this paper the Sumudo transform is coupled with homotopy Perturbation Method to have the numerica...
AbstractIn this article a robust approach for solving mixed nonlinear Volterra–Fredholm type integra...
In this study, Homotopy Perturbation Method (HPM) is used to obtain the analytically exact solution ...
AbstractThis paper is an elementary introduction to the concepts of the homotopy perturbation method...