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The Finite Element Method for Boundary Value Problems: Mathematics and Computations - Applied and Computational Mechanics 1st edition
Surana, Karan S. (University of Kansas, USA)
The Finite Element Method for Boundary Value Problems: Mathematics and Computations - Applied and Computational Mechanics 1st edition
Surana, Karan S. (University of Kansas, USA)
Written by two well-respected experts in the field, The Finite Element Method for Boundary Value Problems: Mathematics and Computations bridges the gap between applied mathematics and application-oriented computational studies using FEM. Mathematically rigorous, the FEM is presented as a method of approximation for differential operators that are mathematically classified as self-adjoint, non-self-adjoint, and non-linear, thus addressing totality of all BVPs in various areas of engineering, applied mathematics, and physical sciences. These classes of operators are utilized in various methods of approximation: Galerkin method, Petrov-Galerkin Method, weighted residual method, Galerkin method with weak form, least squares method based on residual functional, etc. to establish unconditionally stable finite element computational processes using calculus of variations. Readers are able to grasp the mathematical foundation of finite element method as well as its versatility of applications. h-, p-, and k-versions of finite element method, hierarchical approximations, convergence, error estimation, error computation, and adaptivity are additional significant aspects of this book.
800 pages, 250 black & white illustrations
Media | Books Hardcover Book (Book with hard spine and cover) |
Released | November 2, 2016 |
ISBN13 | 9781498780506 |
Publishers | Taylor & Francis Inc |
Pages | 824 |
Dimensions | 261 × 185 × 35 mm · 1.50 kg |
Language | English |