
Finite Element Methods for Eigenvalue Problems by Jiguang Sun
Praise for the previous edition
“I highly recommend the book, especially for the curious graduate student."
—Joe Coyle, Mathematical Reviews
Finite Element Methods for Eigenvalue Problems covers finite element methods for several typical eigenvalues that arise from science and engineering. Both theory and implementation are covered in depth at the graduate level. The background for typical eigenvalue problems is included along with functional analysis tools, finite element discretization methods, convergence analysis, techniques for matrix evaluation problems, and computer implementation. The book also presents new methods, such as the discontinuous Galerkin method, and new problems, such as the transmission eigenvalue problem.
New to the second edition
· Two brand new chapters
· Copious revisions of existing chapters
· Revised references throughout.
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Spectral Geometry of Partial Differential Operators
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Summable Spaces and Their Duals, Matrix Transformations and Geometric Properties
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Nonlinear Reaction-Diffusion-Convection Equations
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Symmetry and Quantum Mechanics
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Extending Structures
- Abstract Calculus
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Inequalities and Integral Operators in Function Spaces
- Computation with Linear Algebraic Groups
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Abstract Cauchy Problems
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Monomial Algebras
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Introduction to the Potential Theory for the Time-Dependent Stokes System
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Differential Modules over Differential Rings
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Set Theoretical Aspects of Real Analysis
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Elastic Waves
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Lineability
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Spectral Methods Using Multivariate Polynomials On The Unit Ball
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Partial Differential Equations with Variable Exponents
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Localized Dynamics of Thin-Walled Shells
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Morrey Spaces
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Signal Processing
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Iterative Methods without Inversion
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Diagram Genus, Generators, and Applications
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Iterative Methods and Preconditioning for Large and Sparse Linear Systems with Applications
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Analysis on Function Spaces of Musielak-Orlicz Type
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Integration and Cubature Methods
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Separate and Joint Continuity
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Inverse Scattering Problems and Their Application to Nonlinear Integrable Equations
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Constructive Analysis of Semicircular Elements
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Spectral and Scattering Theory for Second Order Partial Differential Operators
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Modeling and Inverse Problems in the Presence of Uncertainty
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Dictionary of Inequalities
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Cremona Groups and the Icosahedron
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Markov Random Flights
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Willmore Energy and Willmore Conjecture
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Mathematical Modelling of Waves in Multi-Scale Structured Media
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Semigroups of Bounded Operators and Second-Order Elliptic and Parabolic Partial Differential Equations
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Tools for Infinite Dimensional Analysis
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Applications of Homogenization Theory to the Study of Mineralized Tissue
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Matrix Inequalities and Their Extensions to Lie Groups
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Calculus of Variations and Control Theory
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A Course on Malliavin-Skorohod Calculus for Additive Processes with Applications to Finance
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Beyond the Gibbs Paradigm
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Unbounded Operators and Subnormality
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Free Random Variables
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Non-Newtonian Sequence Spaces with Applications
Jiguang Sun is the Richard and Elizabeth Henes Endowed Professor of Mathematics at Michigan Technological University. He received his B.S. from Tsinghua University in 1996 and his Ph.D. from the University of Delaware in 2005. His research interests include numerical analysis, computational methods for eigenvalue problems, and inverse scattering theory.
Aihui Zhou is a professor at the Academy of Mathematics and Systems Science of the Chinese Academy of Sciences. He received his Ph.D. from the Institute of Systems Science of the Chinese Academy of Sciences in 1991. His research focuses on mathematical understanding and numerical approximation of electronic structure models and related topics.
| SKU | Unavailable |
| ISBN 13 | 9781032983028 |
| ISBN 10 | 1032983027 |
| Title | Finite Element Methods for Eigenvalue Problems |
| Author | Jiguang Sun |
| Series | Chapman And Hall Crc Monographs And Research Notes In Mathematics |
| Condition | Unavailable |
| Binding Type | Hardback |
| Publisher | Chapman and Hall/CRC |
| Year published | 2026-05-22 |
| Cover note | Book picture is for illustrative purposes only, actual binding, cover or edition may vary. |
| Note | Unavailable |










































