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Pt. I | Basic Definitions and Properties | |
1 | The Basic Equations | 3 |
2 | Functional Issues | 15 |
3 | Plane Wave Solutions | 25 |
Pt. II | Finite Difference Methods | |
4 | Construction of the Schemes in Homogeneous Media | 35 |
5 | The Dispersion Relation | 65 |
6 | Stability of the Schemes | 83 |
7 | Numerical Dispersion and Anisotropy | 101 |
8 | Construction of the Schemes in Heterogeneous Media | 123 |
9 | Stability by Energy Techniques | 137 |
10 | Reflection-Transmission Analysis | 145 |
Pt. III | Finite Element Methods | |
11 | Mass-Lumping in 1D | 169 |
12 | Spectral Elements | 211 |
13 | Mass-Lumped Mixed Formulations and Edge Elements | 261 |
14 | Modeling Unbounded Domains | 307 |
A | Appendix: Construction of a General H(curl)-Conforming Transform | 331 |
Bibliography | 341 | |
Index | 347 |
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Add Higher-Order Numerical Methods for Transient Wave Equations, To my knowledge [this] is the first book to address specifically the use of high-order discretizations in the time domain to solve wave equations. [...] I recommend the book for its clear and cogent coverage of the material selected by its author. —Phys, Higher-Order Numerical Methods for Transient Wave Equations to the inventory that you are selling on WonderClubX
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Add Higher-Order Numerical Methods for Transient Wave Equations, To my knowledge [this] is the first book to address specifically the use of high-order discretizations in the time domain to solve wave equations. [...] I recommend the book for its clear and cogent coverage of the material selected by its author. —Phys, Higher-Order Numerical Methods for Transient Wave Equations to your collection on WonderClub |