Two cubic spline methods for solving Fredholm integral equations
From MaRDI portal
Publication:670974
DOI10.1016/j.amc.2015.11.055zbMath1410.65488OpenAlexW2220222640MaRDI QIDQ670974
Driss Sbibih, Azzeddine Bellour, Ahmed Zidna
Publication date: 20 March 2019
Published in: Applied Mathematics and Computation (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.amc.2015.11.055
Related Items
Algebraic hyperbolic spline quasi-interpolants and applications, Generalized spline quasi-interpolants and applications to numerical analysis, Application of Newton–Cotes quadrature rule for nonlinear Hammerstein integral equations, Trigonometric Hermite interpolation method for Fredholm linear integral equations, Non-uniform UE-spline quasi-interpolants and their application to the numerical solution of integral equations, A new approach to the numerical solution of Fredholm integral equations using least squares-support vector regression, A new method to solve numeric solution of nonlinear dynamic system, Exponential spline for the numerical solutions of linear Fredholm integro-differential equations, Superconvergent methods based on cubic splines for solving linear integral equations, Exponential spline method for approximation solution of Fredholm integro-differential equation, Convergence analysis of non-polynomial spline functions for the Fredholm integral equation
Cites Work
- Unnamed Item
- Unnamed Item
- A new analytical technique to solve Fredholm's integral equations
- Solving Fredholm integral equations by approximating kernels by spline quasi-interpolants
- The numerical method of successive interpolations for Fredholm functional integral equations
- A numerical scheme for a class of nonlinear Fredholm integral equations of the second kind
- Numerical solution of Burgers' equation by cubic B-spline quasi-interpolation
- An application of the generalized alternating polynomials to the numerical solution of Fredholm integral equations
- Numerical solution of linear Fredholm integral equation by using hybrid Taylor and Block-Pulse functions.
- Iteration methods for Fredholm integral equations of the second kind based on spline quasi-interpolants
- Applying cubic B-spline quasi-interpolation to solve 1D wave equations in polar coordinates
- Inversion of general tridiagonal matrices
- Numerical solutions of second-order matrix models using cubic-matrix splines
- Numerical method using cubic B-spline for the heat and wave equation
- Piecewise Continuous Collocation for Integral Equations
- The Numerical Solution of Integral Equations of the Second Kind
- On the Eigenvalues of a Class of Integral Equations Arising in Laser Theory
- On the Order of Convergence of Natural Cubic Spline Interpolation