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The contributions by leading experts in this book focus on a
variety of topics of current interest related to information-based
complexity, ranging from function approximation, numerical
integration, numerical methods for the sphere, and algorithms with
random information, to Bayesian probabilistic numerical methods and
numerical methods for stochastic differential equations.
Lattice rules are a powerful and popular form of quasi-Monte Carlo
rules based on multidimensional integration lattices. This book
provides a comprehensive treatment of the subject with detailed
explanations of the basic concepts and the current methods used in
research. This comprises, for example, error analysis in
reproducing kernel Hilbert spaces, fast component-by-component
constructions, the curse of dimensionality and tractability,
weighted integration and approximation problems, and applications
of lattice rules.
Lattice rules are a powerful and popular form of quasi-Monte Carlo
rules based on multidimensional integration lattices. This book
provides a comprehensive treatment of the subject with detailed
explanations of the basic concepts and the current methods used in
research. This comprises, for example, error analysis in
reproducing kernel Hilbert spaces, fast component-by-component
constructions, the curse of dimensionality and tractability,
weighted integration and approximation problems, and applications
of lattice rules.
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