Buch, Englisch, Band 344, 248 Seiten, Format (B × H): 169 mm x 243 mm, Gewicht: 408 g
Reihe: Chapman & Hall/CRC Research Notes in Mathematics Series
Buch, Englisch, Band 344, 248 Seiten, Format (B × H): 169 mm x 243 mm, Gewicht: 408 g
Reihe: Chapman & Hall/CRC Research Notes in Mathematics Series
ISBN: 978-0-582-27633-8
Verlag: Chapman and Hall/CRC
This volume contains invited papers presented at the 16th Dundee Biennial Conference on Numerical Analysis held at the University of Dundee, 27-30 June, 1995. The Dundee Conferences are important events in the numerical analysis calendar, and the thirteen papers published here represent accounts of recent research work by leading numerical analysts covering a wide range of fields of interest. The book is a valuable guide to the direction of current research in many areas of numerical analysis. It will be of particular interest to graduate students and research workers concerned with the theory and application of numerical methods for solving ordinary and partial differential equations, with emphasis on problems in fluid dynamics. It also contains contributions to research into methods of linear algebra, numerical methods for optimisation problems and surface fitting.
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Moving mesh methods with applications to blow-up problems for PDEsMultidimensional schemes for nonlinear systems of hyperbolic conservation lawsODE solving via automatic differentiation and rational predictionDiscretised eigenvalue problems, LBB constants and stabilizationHow mathematics can help in design of mechanical structuresVariational error bounds for radial basis functionsCheap enhancement of symplectic integratorsFinite volume methodsOrthogonal eigenvectors without GramñSchmidtFast & robust solvers for time-discretised incompressible Navier-Stokes equationsA posteriori error analysis and global error control for adaptive finite volume approximations of hyperbolic problemsDirect search methods: once scorned, now respectable Computational challenges in the solution of nonlinear oscillatory multibody dynamics systems