Fourth-Order Difference Scheme and a Matrix Transform Approach for Solving Fractional PDEs
Author:
Affiliation:
1. Department of Mathematics, Isfahan (Khorasgan) Branch, Islamic Azad University, Isfahan P.O. Box 158-81595, Iran
2. Information Technology Research and Development Center, University of Kufa, Najaf 540011, Iraq
Abstract
Publisher
MDPI AG
Subject
General Mathematics,Engineering (miscellaneous),Computer Science (miscellaneous)
Link
https://www.mdpi.com/2227-7390/11/17/3786/pdf
Reference38 articles.
1. Hilfer, R. (2000). Applications of Fractional Calculus in Physics, World Scientific.
2. Theory of Viscoelasticity. VonR. M. Christensen. Academic Press, New York-London 1971. 1. Aufl., XI, 245 S., zahlr. Abb. geb. $ 13.50;Giesekus;Chem. Ing. Tech. CIT,1972
3. Renardy, M. (2000). Mathematical Analysis of Viscoelastic Flows, SIAM.
4. Numerical solution of partial integro-differential equations with weakly singular kernels;Aziz;Adv. Math. Model. Appl.,2020
5. High-order ADI orthogonal spline collocation method for a new 2D fractional integro-differential problem;Qiao;Math. Methods Appl. Sci.,2020
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