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Mathematics and Computation, a Contemporary View - The Abel Symposium 2006 (Paperback, Softcover reprint of hardcover 1st ed.... Mathematics and Computation, a Contemporary View - The Abel Symposium 2006 (Paperback, Softcover reprint of hardcover 1st ed. 2008)
Hans Munthe-Kaas, Brynjulf Owren
R1,557 Discovery Miles 15 570 Ships in 10 - 15 working days

The 2006 Abel symposium is focusing on contemporary research involving interaction between computer science, computational science and mathematics. In recent years, computation has been affecting pure mathematics in fundamental ways. Conversely, ideas and methods of pure mathematics are becoming increasingly important within computational and applied mathematics. At the core of computer science is the study of computability and complexity for discrete mathematical structures. Studying the foundations of computational mathematics raises similar questions concerning continuous mathematical structures. There are several reasons for these developments. The exponential growth of computing power is bringing computational methods into ever new application areas.

Equally important is the advance of software and programming languages, which to an increasing degree allows the representation of abstract mathematical structures in program code. Symbolic computing is bringing algorithms from mathematical analysis into the hands of pure and applied mathematicians, and the combination of symbolic and numerical techniques is becoming increasingly important both in computational science and in areas of pure mathematics.

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 …
R3,693 Discovery Miles 36 930 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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