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Numerical Methods in Sensitivity Analysis and Shape Optimization (Hardcover, 2003 ed.): Emmanuel Laporte, Patrick Le Tallec Numerical Methods in Sensitivity Analysis and Shape Optimization (Hardcover, 2003 ed.)
Emmanuel Laporte, Patrick Le Tallec
R1,413 Discovery Miles 14 130 Ships in 18 - 22 working days

Sensitivity analysis and optimal shape design are key issues in engineering that have been affected by advances in numerical tools currently available. This book, and its supplementary online files, presents basic optimization techniques that can be used to compute the sensitivity of a given design to local change, or to improve its performance by local optimization of these data. The relevance and scope of these techniques have improved dramatically in recent years because of progress in discretization strategies, optimization algorithms, automatic differentiation, software availability, and the power of personal computers.

Numerical Methods in Sensitivity Analysis and Shape Optimization will be of interest to graduate students involved in mathematical modeling and simulation, as well as engineers and researchers in applied mathematics looking for an up-to-date introduction to optimization techniques, sensitivity analysis, and optimal design.

Numerical Methods in Sensitivity Analysis and Shape Optimization (Paperback, Softcover reprint of the original 1st ed. 2003):... Numerical Methods in Sensitivity Analysis and Shape Optimization (Paperback, Softcover reprint of the original 1st ed. 2003)
Emmanuel Laporte, Patrick Le Tallec
R1,387 Discovery Miles 13 870 Ships in 18 - 22 working days

Sensitivity analysis and optimal shape design are key issues in engineering that have been affected by advances in numerical tools currently available. This book, and its supplementary online files, presents basic optimization techniques that can be used to compute the sensitivity of a given design to local change, or to improve its performance by local optimization of these data. The relevance and scope of these techniques have improved dramatically in recent years because of progress in discretization strategies, optimization algorithms, automatic differentiation, software availability, and the power of personal computers. Numerical Methods in Sensitivity Analysis and Shape Optimization will be of interest to graduate students involved in mathematical modeling and simulation, as well as engineers and researchers in applied mathematics looking for an up-to-date introduction to optimization techniques, sensitivity analysis, and optimal design.

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