AbstractThe finite integral transform technique is interpreted as a powerful new general-purpose numerical method. The method transforms nonlinear partial differential equation models to a coupled nonlinear system of ordinary differential equations to be solved numerically. One class of heat diffusion problems is considered, but the method is applicable to other models. A new approach for the derivation of the corresponding system of ordinary differential equations is used, and three examples are given
The Generalized Integral Transform Technique (GITT) is employed in the analytical solution of transi...
It has long been known that certain integral transforms and Fourier-type series can be used to solve...
The Mathematica system (version 4.0) is employed in the solution of nonlinear difusion and convectio...
AbstractThe finite integral transform technique is interpreted as a powerful new general-purpose num...
The purpose of this paper is to propose the generalized integral transform technique (GITT) to the s...
The current work provides a comparison between two different methodologies for solving convection-di...
The current work provides a comparison between two different methodologies for solving convection-di...
An unifying overview of the Generalized Integral Transform Technique (GITT) as a computational-analy...
In this work, we use a combination between a new integral transform and the homotopy perturbation me...
In this paper, we address a new computational method, which is called the differential-integral t...
Abstract: This contribution describes a hybrid analytical-numerical procedure for solving a class of...
In this work, we use a combination between a new integral transform and the homotopy perturbation me...
In this paper, we propose a new integral transform method for the first time. It is used to find ...
In this work, we use a combination between a new integral transform and the homotopy perturbation me...
A unified approach for solving convection-diffusion problems using the Generalized Integral Transfor...
The Generalized Integral Transform Technique (GITT) is employed in the analytical solution of transi...
It has long been known that certain integral transforms and Fourier-type series can be used to solve...
The Mathematica system (version 4.0) is employed in the solution of nonlinear difusion and convectio...
AbstractThe finite integral transform technique is interpreted as a powerful new general-purpose num...
The purpose of this paper is to propose the generalized integral transform technique (GITT) to the s...
The current work provides a comparison between two different methodologies for solving convection-di...
The current work provides a comparison between two different methodologies for solving convection-di...
An unifying overview of the Generalized Integral Transform Technique (GITT) as a computational-analy...
In this work, we use a combination between a new integral transform and the homotopy perturbation me...
In this paper, we address a new computational method, which is called the differential-integral t...
Abstract: This contribution describes a hybrid analytical-numerical procedure for solving a class of...
In this work, we use a combination between a new integral transform and the homotopy perturbation me...
In this paper, we propose a new integral transform method for the first time. It is used to find ...
In this work, we use a combination between a new integral transform and the homotopy perturbation me...
A unified approach for solving convection-diffusion problems using the Generalized Integral Transfor...
The Generalized Integral Transform Technique (GITT) is employed in the analytical solution of transi...
It has long been known that certain integral transforms and Fourier-type series can be used to solve...
The Mathematica system (version 4.0) is employed in the solution of nonlinear difusion and convectio...