This is the only book available that analyzes in depth the mathematical foundations of the finite element method. It is a valuable reference and introduction to current research on the numerical analysis of the finite element method, as well as a working textbook for graduate courses in numerical analysis. It includes many useful figures, and there are many exercises of varying difficulty.
Although nearly 25 years have passed since this book was first published, the majority of its content remains up-to-date. Chapters 1 through 6, which cover the basic error estimates for elliptic problems, are still the best available sources for material on this topic. The material covered in Chapters 7 and 8, however, has undergone considerable progress in terms of new applications of the finite element method; therefore, the author provides, in the Preface to the Classics Edition, a bibliography of recent texts that complement the classic material in these chapters.
| ISBN: | 9780898715149 |
| Publication date: | 30th April 2002 |
| Author: | Philippe G Ciarlet |
| Publisher: | Society for Industrial and Applied Mathematics an imprint of SIAM - Society for Industrial and Applied Mathematics |
| Format: | Paperback |
| Pagination: | 530 pages |
| Series: | Classics in Applied Mathematics |
| Genres: |
Applied mathematics |
This is the only book available that analyzes in depth the mathematical foundations of the finite element method. It is a valuable reference and introduction to current research on the numerical analysis of the finite element method, as well as a working textbook for graduate courses in numerical analysis.
The Finite Element Method for Elliptic Problems features in the following genres: Applied mathematics
Paperback. Not Available.
The Finite Element Method for Elliptic Problems was written by Philippe G Ciarlet and published by Society for Industrial and Applied Mathematics an imprint of SIAM - Society for Industrial and Applied Mathematics
The Finite Element Method for Elliptic Problems has 530 pages
Yes it is part of Classics in Applied Mathematics series