The author proposes a numerical procedure in order to approximate the solution of a class of Fredholm integral equations of the third kind on unbounded domains. The given equation is transformed in a Fredholm integral equation of the second kind. Hence, according to the integration interval, the equation is regularized by means of a suitable one-to-one map or is transformed in a system of two Fredholm integral equations that are subsequently regularized. In both cases a Nyström method is applied, the convergence and the stability of which are proved in spaces of weighted continuous functions. Error estimates and numerical tests are also included
In this paper, we propose a suitable combination of two different Nyström methods, both using the ze...
Fredholm integral equations on the interval [−1, 1] with right-hand sides having isolated singulari...
A modified approach to obtain approximate numerical solutions of Fredholin integral equations of the...
Fredholm integral equations with the right-hand side having singularities at the endpoints are consi...
Fredholm integral equations with the right-hand side having singularities at the endpoints are cons...
AbstractIn this paper the authors propose numerical methods to approximate the solutions of systems ...
In this paper the authors propose numerical methods to approximate the solutions of systems of secon...
In this paper the authors propose a Nystrom method based on a ``truncated" Gaussian rule to solve sy...
AbstractNyström type methods are constructed and justified for a class of Fredholm integral equation...
In this paper, the authors introduce a Nystrom method for solving systems of Fredholm integral equat...
In this paper we investigate some Nystr¨om methods for Fredholm integral equations in the interval [...
This paper is concerned with the numerical approximation of Fredholm integral equations of the secon...
Fredholm integral equations of the first kind are considered by applying regularization method and t...
In this paper we propose a numerical procedure in order to approximate the solution of two-dimension...
An integral equation of the form ζ(x) - λ∫ K(x, s) ζ(s) ds = f(x) a ≤ x ≤ b is called a Fredholm equ...
In this paper, we propose a suitable combination of two different Nyström methods, both using the ze...
Fredholm integral equations on the interval [−1, 1] with right-hand sides having isolated singulari...
A modified approach to obtain approximate numerical solutions of Fredholin integral equations of the...
Fredholm integral equations with the right-hand side having singularities at the endpoints are consi...
Fredholm integral equations with the right-hand side having singularities at the endpoints are cons...
AbstractIn this paper the authors propose numerical methods to approximate the solutions of systems ...
In this paper the authors propose numerical methods to approximate the solutions of systems of secon...
In this paper the authors propose a Nystrom method based on a ``truncated" Gaussian rule to solve sy...
AbstractNyström type methods are constructed and justified for a class of Fredholm integral equation...
In this paper, the authors introduce a Nystrom method for solving systems of Fredholm integral equat...
In this paper we investigate some Nystr¨om methods for Fredholm integral equations in the interval [...
This paper is concerned with the numerical approximation of Fredholm integral equations of the secon...
Fredholm integral equations of the first kind are considered by applying regularization method and t...
In this paper we propose a numerical procedure in order to approximate the solution of two-dimension...
An integral equation of the form ζ(x) - λ∫ K(x, s) ζ(s) ds = f(x) a ≤ x ≤ b is called a Fredholm equ...
In this paper, we propose a suitable combination of two different Nyström methods, both using the ze...
Fredholm integral equations on the interval [−1, 1] with right-hand sides having isolated singulari...
A modified approach to obtain approximate numerical solutions of Fredholin integral equations of the...