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Numerical Algebra, Matrix Theory, Differential-Algebraic Equations and Control Theory - Festschrift in Honor of Volker Mehrmann... Numerical Algebra, Matrix Theory, Differential-Algebraic Equations and Control Theory - Festschrift in Honor of Volker Mehrmann (Hardcover, 2015 ed.)
Peter Benner, Matthias Bollhoefer, Daniel Kressner, Christian Mehl, Tatjana Stykel
R3,223 Discovery Miles 32 230 Ships in 10 - 15 working days

This edited volume highlights the scientific contributions of Volker Mehrmann, a leading expert in the area of numerical (linear) algebra, matrix theory, differential-algebraic equations and control theory. These mathematical research areas are strongly related and often occur in the same real-world applications. The main areas where such applications emerge are computational engineering and sciences, but increasingly also social sciences and economics. This book also reflects some of Volker Mehrmann's major career stages. Starting out working in the areas of numerical linear algebra (his first full professorship at TU Chemnitz was in "Numerical Algebra," hence the title of the book) and matrix theory, Volker Mehrmann has made significant contributions to these areas ever since. The highlights of these are discussed in Parts I and II of the present book. Often the development of new algorithms in numerical linear algebra is motivated by problems in system and control theory. These and his later major work on differential-algebraic equations, to which he together with Peter Kunkel made many groundbreaking contributions, are the topic of the chapters in Part III. Besides providing a scientific discussion of Volker Mehrmann's work and its impact on the development of several areas of applied mathematics, the individual chapters stand on their own as reference works for selected topics in the fields of numerical (linear) algebra, matrix theory, differential-algebraic equations and control theory.

Numerical Mathematics and Advanced  Applications - ENUMATH 2013 - Proceedings of ENUMATH 2013, the 10th European Conference on... Numerical Mathematics and Advanced Applications - ENUMATH 2013 - Proceedings of ENUMATH 2013, the 10th European Conference on Numerical Mathematics and Advanced Applications, Lausanne, August 2013 (Hardcover, 2015 ed.)
Assyr Abdulle, Simone Deparis, Daniel Kressner, Fabio Nobile, Marco Picasso
R4,741 Discovery Miles 47 410 Ships in 12 - 17 working days

This book gathers a selection of invited and contributed lectures from the European Conference on Numerical Mathematics and Advanced Applications (ENUMATH) held in Lausanne, Switzerland, August 26-30, 2013. It provides an overview of recent developments in numerical analysis, computational mathematics and applications from leading experts in the field. New results on finite element methods, multiscale methods, numerical linear algebra and discretization techniques for fluid mechanics and optics are presented. As such, the book offers a valuable resource for a wide range of readers looking for a state-of-the-art overview of advanced techniques, algorithms and results in numerical mathematics and scientific computing.

Numerical Mathematics and Advanced  Applications - ENUMATH 2013 - Proceedings of ENUMATH 2013, the 10th European Conference on... Numerical Mathematics and Advanced Applications - ENUMATH 2013 - Proceedings of ENUMATH 2013, the 10th European Conference on Numerical Mathematics and Advanced Applications, Lausanne, August 2013 (Paperback, Softcover reprint of the original 1st ed. 2015)
Assyr Abdulle, Simone Deparis, Daniel Kressner, Fabio Nobile, Marco Picasso
R4,737 Discovery Miles 47 370 Ships in 10 - 15 working days

This book gathers a selection of invited and contributed lectures from the European Conference on Numerical Mathematics and Advanced Applications (ENUMATH) held in Lausanne, Switzerland, August 26-30, 2013. It provides an overview of recent developments in numerical analysis, computational mathematics and applications from leading experts in the field. New results on finite element methods, multiscale methods, numerical linear algebra and discretization techniques for fluid mechanics and optics are presented. As such, the book offers a valuable resource for a wide range of readers looking for a state-of-the-art overview of advanced techniques, algorithms and results in numerical mathematics and scientific computing.

Numerical Algebra, Matrix Theory, Differential-Algebraic Equations and Control Theory - Festschrift in Honor of Volker Mehrmann... Numerical Algebra, Matrix Theory, Differential-Algebraic Equations and Control Theory - Festschrift in Honor of Volker Mehrmann (Paperback, Softcover reprint of the original 1st ed. 2015)
Peter Benner, Matthias Bollhoefer, Daniel Kressner, Christian Mehl, Tatjana Stykel
R4,936 Discovery Miles 49 360 Ships in 10 - 15 working days

This edited volume highlights the scientific contributions of Volker Mehrmann, a leading expert in the area of numerical (linear) algebra, matrix theory, differential-algebraic equations and control theory. These mathematical research areas are strongly related and often occur in the same real-world applications. The main areas where such applications emerge are computational engineering and sciences, but increasingly also social sciences and economics. This book also reflects some of Volker Mehrmann's major career stages. Starting out working in the areas of numerical linear algebra (his first full professorship at TU Chemnitz was in "Numerical Algebra," hence the title of the book) and matrix theory, Volker Mehrmann has made significant contributions to these areas ever since. The highlights of these are discussed in Parts I and II of the present book. Often the development of new algorithms in numerical linear algebra is motivated by problems in system and control theory. These and his later major work on differential-algebraic equations, to which he together with Peter Kunkel made many groundbreaking contributions, are the topic of the chapters in Part III. Besides providing a scientific discussion of Volker Mehrmann's work and its impact on the development of several areas of applied mathematics, the individual chapters stand on their own as reference works for selected topics in the fields of numerical (linear) algebra, matrix theory, differential-algebraic equations and control theory.

Numerical Methods for General and Structured Eigenvalue Problems (Paperback, 2005 ed.): Daniel Kressner Numerical Methods for General and Structured Eigenvalue Problems (Paperback, 2005 ed.)
Daniel Kressner
R3,108 Discovery Miles 31 080 Ships in 10 - 15 working days

This book is about computing eigenvalues, eigenvectors, and invariant subspaces of matrices. Treatment includes generalized and structured eigenvalue problems and all vital aspects of eigenvalue computations. A unique feature is the detailed treatment of structured eigenvalue problems, providing insight on accuracy and efficiency gains to be expected from algorithms that take the structure of a matrix into account.

Exploiting Hidden Structure in Matrix Computations: Algorithms and Applications - Cetraro, Italy 2015 (Paperback, 1st ed.... Exploiting Hidden Structure in Matrix Computations: Algorithms and Applications - Cetraro, Italy 2015 (Paperback, 1st ed. 2016)
Michele Benzi, Dario Bini, Daniel Kressner, Hans Munthe-Kaas, Charles van Loan; Edited by …
R3,717 Discovery Miles 37 170 Ships in 10 - 15 working days

Focusing on special matrices and matrices which are in some sense `near' to structured matrices, this volume covers a broad range of topics of current interest in numerical linear algebra. Exploitation of these less obvious structural properties can be of great importance in the design of efficient numerical methods, for example algorithms for matrices with low-rank block structure, matrices with decay, and structured tensor computations. Applications range from quantum chemistry to queuing theory. Structured matrices arise frequently in applications. Examples include banded and sparse matrices, Toeplitz-type matrices, and matrices with semi-separable or quasi-separable structure, as well as Hamiltonian and symplectic matrices. The associated literature is enormous, and many efficient algorithms have been developed for solving problems involving such matrices. The text arose from a C.I.M.E. course held in Cetraro (Italy) in June 2015 which aimed to present this fast growing field to young researchers, exploiting the expertise of five leading lecturers with different theoretical and application perspectives.

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