This book offers an ideal introduction to singular perturbation problems, and a valuable guide for researchers in the field of differential equations.
It also includes chapters on new contributions to both fields: differential equations and singular perturbation problems.
Written by experts who are active researchers in the related fields, the book serves as a comprehensive source of information on the underlying ideas in the construction of numerical methods to address different classes of problems with solutions of different behaviors, which will ultimately help researchers to design and assess numerical methods for solving new problems.
All the chapters presented in the volume are complemented by illustrations in the form of tables and graphs.
von Valarmathi, S.
und Miller, John J.
und Narasimhan, Ramanujam und Mathiazhagan, Paramasivam und Victor, Frankli.
Valarmathi Sigamani
Arieh Iserles
Bouchaib Radi
George Lindfield
Bouchaib Radi
David Noble
Michel Kern
Michael Francis Atiyah
Peter J. Olver
Peter Young
These notes describe how to average and fit numerical data that have been obtained either by simulation or measurement.
Volker Eyert
Brent Maxfield
Richard L. Burden
Marsha Arvoy
Arieh Iserles
Stefan Felder
Timothy Sauer
Arieh Iserles
M. D. Salas
Rao V. Garimella
Kathryn Marie Graham
Christian Grossmann
G. R. Liu
Allaberen Ashyralyev
This book explores new difference schemes for approximating the solutions of regular and singular perturbation boundary-value problems for pdes.
Abdelwahab Kharab
California HealthCare Foundation
Dale U. Von Rosenberg
John A. N. Lee
Great Britain. Medical Research Committee
Marcus Rubin
Samuel Lawrence