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    Jian-Ming  Jin The Finite Element Method in Electromagnetics rabee jari superconvergence of finite element approximations for pdes Jian-Ming  Jin The Finite Element Method in Electromagnetics купить
    Jian-Ming Jin The Finite Element Method in Electromagnetics
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      Richard  Bernatz Fourier Series and Numerical Methods for Partial Differential Equations rabee jari superconvergence of finite element approximations for pdes Richard  Bernatz Fourier Series and Numerical Methods for Partial Differential Equations купить
      Richard Bernatz Fourier Series and Numerical Methods for Partial Differential Equations
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        Amir Khoei R. Extended Finite Element Method. Theory and Applications rabee jari superconvergence of finite element approximations for pdes Amir Khoei R. Extended Finite Element Method. Theory and Applications купить
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          Cho W. S. To Stochastic Structural Dynamics. Application of Finite Element Methods rabee jari superconvergence of finite element approximations for pdes Cho W. S. To Stochastic Structural Dynamics. Application of Finite Element Methods купить
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            S. Lui H Numerical Analysis of Partial Differential Equations rabee jari superconvergence of finite element approximations for pdes S. Lui H Numerical Analysis of Partial Differential Equations купить
            S. Lui H Numerical Analysis of Partial Differential Equations
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              А. В. Ермакова Метод дополнительных конечных элементов для расчета железобетонных конструкций по предельным состояниям rabee jari superconvergence of finite element approximations for pdes А. В. Ермакова Метод дополнительных конечных элементов для расчета железобетонных конструкций по предельным состояниям купить
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                A. Baker J. Finite Elements. Computational Engineering Sciences rabee jari superconvergence of finite element approximations for pdes A. Baker J. Finite Elements. Computational Engineering Sciences купить
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                  Alan  Palazzolo Vibration Theory and Applications with Finite Elements and Active Vibration Control rabee jari superconvergence of finite element approximations for pdes Alan  Palazzolo Vibration Theory and Applications with Finite Elements and Active Vibration Control купить
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                    Salah  Obayya Computational Photonics rabee jari superconvergence of finite element approximations for pdes Salah  Obayya Computational Photonics купить
                    Salah Obayya Computational Photonics
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                      Marcelo  Epstein The Elements of Continuum Biomechanics rabee jari superconvergence of finite element approximations for pdes Marcelo  Epstein The Elements of Continuum Biomechanics купить
                      Marcelo Epstein The Elements of Continuum Biomechanics
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                        James Epperson F. An Introduction to Numerical Methods and Analysis rabee jari superconvergence of finite element approximations for pdes James Epperson F. An Introduction to Numerical Methods and Analysis купить
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                          Vincent  Guinot Wave Propagation in Fluids. Models and Numerical Techniques rabee jari superconvergence of finite element approximations for pdes Vincent  Guinot Wave Propagation in Fluids. Models and Numerical Techniques купить
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                          14497.74 Руб
                            John Brauer R. Magnetic Actuators and Sensors rabee jari superconvergence of finite element approximations for pdes John Brauer R. Magnetic Actuators and Sensors купить
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                              Г. Е. Бесстремянная Measuring income equity in the demand for healthcare with finite mixture models rabee jari superconvergence of finite element approximations for pdes Г. Е. Бесстремянная Measuring income equity in the demand for healthcare with finite mixture models купить
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                                The importance of partial differential equations (PDEs) in modeling phenomena in engineering as well as in the physical, natural, and social sciences is well known by students and practitioners in these fields. Striking a balance between theory and applications, Fourier Series and Numerical Methods for Partial Differential Equations presents an introduction to the analytical and numerical methods that are essential for working with partial differential equations. Combining methodologies from calculus, introductory linear algebra, and ordinary differential equations (ODEs), the book strengthens and extends readers' knowledge of the power of linear spaces and linear transformations for purposes of understanding and solving a wide range of PDEs. The book begins with an introduction to the general terminology and topics related to PDEs, including the notion of initial and boundary value problems and also various solution techniques. Subsequent chapters explore: The solution process for Sturm-Liouville boundary value ODE problems and a Fourier series representation of the solution of initial boundary value problems in PDEs The concept of completeness, which introduces readers to Hilbert spaces The application of Laplace transforms and Duhamel's theorem to solve time-dependent boundary conditions The finite element method, using finite dimensional subspaces The finite analytic method with applications of the Fourier series methodology to linear version of non-linear PDEs Throughout the book, the author incorporates his own class-tested material, ensuring an accessible and easy-to-follow presentation that helps readers connect presented objectives with relevant applications to their own work. Maple is used throughout to solve many exercises, and a related Web site features Maple worksheets for readers to use when working with the book's one- and multi-dimensional problems. Fourier Series and Numerical Methods for Partial Differential Equations is an ideal book for courses on applied mathematics and partial differential equations at the upper-undergraduate and graduate levels. It is also a reliable resource for researchers and practitioners in the fields of mathematics, science, and engineering who work with mathematical modeling of physical phenomena, including diffusion and wave aspects.

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