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The Graduate Student's Guide to Numerical Analysis '98 - Lecture Notes from the VIII EPSRC Summer School in Numerical... The Graduate Student's Guide to Numerical Analysis '98 - Lecture Notes from the VIII EPSRC Summer School in Numerical Analysis (Hardcover, 1999 ed.)
Mark Ainsworth, Jeremy Levesley, Marco Marletta
R1,554 Discovery Miles 15 540 Ships in 10 - 15 working days

Detailed lecture notes on six topics at the forefront of current research in numerical analysis and applied mathematics, with each set of notes presenting a self-contained guide to a current research area and supplemented by an extensive bibliography. In addition, most of the notes contain detailed proofs of the key results. They start from a level suitable for first year graduates in applied mathematics, mathematical analysis or numerical analysis, and proceed to current research topics. Readers will thus quickly gain an insight into the important results and techniques in each area without recourse to the large research literature. Current (unsolved) problems are also described, and directions for future research given.

Topics in Computational Wave Propagation - Direct and Inverse Problems (Paperback, Softcover reprint of the original 1st ed.... Topics in Computational Wave Propagation - Direct and Inverse Problems (Paperback, Softcover reprint of the original 1st ed. 2003)
Mark Ainsworth, Penny Davies, Dugald B Duncan, Paula Martin, Bryan Rynne
R1,570 Discovery Miles 15 700 Ships in 10 - 15 working days

These ten detailed and authoritative survey articles on numerical methods for direct and inverse wave propagation problems are written by leading experts. Researchers and practitioners in computational wave propagation, from postgraduate level onwards, will find the breadth and depth of coverage of recent developments a valuable resource. The articles describe a wide range of topics on the application and analysis of methods for time and frequency domain PDE and boundary integral formulations of wave propagation problems. Electromagnetic, seismic and acoustic equations are considered. Recent developments in methods and analysis ranging from finite differences to hp-adaptive finite elements, including high-accuracy and fast methods are described with extensive references.

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