New discrete Adomian decomposition methods are presented by using some identified Clenshaw-Curtis quadrature rules. We investigate two mixed quadrature rules one of precision five and the other of precision seven. The first rule is formed by using the Fejér second rule of precision three and Simpson rule of precision three, while the second rule is formed by using the Fejér second rule of precision five and the Boole rule of precision five. Our methods were applied to a nonlinear integral equation of the Hammerstein type and some examples are given to illustrate the validity of our methods
We consider an inverse-free Jarratt-type approximation, whose order of convergence is four, for solv...
In this paper, we discuss the numerical solution of Adomian decomposition method and Taylor’s expans...
We propose a new modification of the Adomian decomposition method for Volterra integral equations of...
We study approximate solutions of a nonlinear integral equation of Hammerstein type. We describe the...
The collocation method for solving linear and nonlinear integral equations results in many integrals...
AbstractIn recent papers, Kumar and Sloan introduced a new collocation-type method for numerical sol...
AbstractWe are concerned here with a nonlinear quadratic integral equation (QIE). The existence of a...
The aim of this paper is to comparison between Newton’s Method and Adomian decomposition method (A.D...
The nonlinear Fredholm integral equation (FIE) represents a large amount of nonlinear phenomena that...
AbstractIn this paper, we introduce a new algorithm for applying the Adomian decomposition method to...
A numerical algorithm, based on a decomposition technique, is presented for solving a class of nonli...
This paper is an introduction, with historical background, to the use of monotone mapping methods in...
In this paper, we used Bernstein polynomials to modify the Adomian decomposition method which can be...
The nonlinear Fredholm integral equation (FIE) represents a large amount of nonlinear phenomena that...
In this paper first, a numerical method based on quasiinterpolation for solving nonlinear Fredholm i...
We consider an inverse-free Jarratt-type approximation, whose order of convergence is four, for solv...
In this paper, we discuss the numerical solution of Adomian decomposition method and Taylor’s expans...
We propose a new modification of the Adomian decomposition method for Volterra integral equations of...
We study approximate solutions of a nonlinear integral equation of Hammerstein type. We describe the...
The collocation method for solving linear and nonlinear integral equations results in many integrals...
AbstractIn recent papers, Kumar and Sloan introduced a new collocation-type method for numerical sol...
AbstractWe are concerned here with a nonlinear quadratic integral equation (QIE). The existence of a...
The aim of this paper is to comparison between Newton’s Method and Adomian decomposition method (A.D...
The nonlinear Fredholm integral equation (FIE) represents a large amount of nonlinear phenomena that...
AbstractIn this paper, we introduce a new algorithm for applying the Adomian decomposition method to...
A numerical algorithm, based on a decomposition technique, is presented for solving a class of nonli...
This paper is an introduction, with historical background, to the use of monotone mapping methods in...
In this paper, we used Bernstein polynomials to modify the Adomian decomposition method which can be...
The nonlinear Fredholm integral equation (FIE) represents a large amount of nonlinear phenomena that...
In this paper first, a numerical method based on quasiinterpolation for solving nonlinear Fredholm i...
We consider an inverse-free Jarratt-type approximation, whose order of convergence is four, for solv...
In this paper, we discuss the numerical solution of Adomian decomposition method and Taylor’s expans...
We propose a new modification of the Adomian decomposition method for Volterra integral equations of...