This graduate-level text provides an application oriented introduction to the numerical methods for elliptic and parabolic partial differential equations. It covers finite difference, finite element, and finite volume methods, interweaving theory and applications throughout. The book examines modern topics such as adaptive methods, multilevel methods, and methods for convection-dominated problems and includes detailed illustrations and extensive exercises. For students with mathematics major it is an excellent introduction to the theory and methods, guiding them in the selection of methods and helping them to understand and pursue finite element programming. For engineering and physics students it provides a general framework for the formulation and analysis of methods.
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"This book has a large amount of new exercise problems that are uniformly distributed across the text. ... this book is a very nice text which will serve well for the undergraduate as well as graduate students and will also become a ready reference for scholars." (Murli M. Gupta, Mathematical Reviews, April, 2023)
"Many of the SIAM Review readership will be interested in NMEPPDE from the standpoint of self-study or classroom education. ... NMEPPDE offers the applied mathematics reader nearly a single point of entry to our broad and challenging area. ... a bit of open space on the bookshelf could profitably be well filled with a copy of NMEPPDE." (Robert C. Kirby, SIAM Review, Vol. 65 (1), March, 2023)
"Many of the SIAM Review readership will be interested in NMEPPDE from the standpoint of self-study or classroom education. ... NMEPPDE offers the applied mathematics reader nearly a single point of entry to our broad and challenging area. ... a bit of open space on the bookshelf could profitably be well filled with a copy of NMEPPDE." (Robert C. Kirby, SIAM Review, Vol. 65 (1), March, 2023)