Computer Algebra in Scientific Computing: 10th International Workshop, CASC 2007, Bonn, Germany, September 16-20, 2007. Proceedings
S. A. Abramov,M. Petkovšek (auth.),Victor G. Ganzha,Ernst W. Mayr,Evgenii V. Vorozhtsov (eds.)
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Gerd Baumann (auth.),Victor G. Ganzha,Ernst W. Mayr,Evgenii V. Vorozhtsov (eds.)
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Welcome to the comprehensive exploration of 'Computer Algebra in Scientific Computing CASC’99', a pivotal collection of scholarly works focused on the synergistic relationship between computer algebra systems and scientific computing. This compendium encapsulates the procee
Before you read
Welcome to the comprehensive exploration of 'Computer Algebra in Scientific Computing CASC’99', a pivotal collection of scholarly works focused on the synergistic relationship between computer algebra systems and scientific computing. This compendium encapsulates the proceedings from the Second Workshop on Computer Algebra in Scientific Computing held in Munich from May 31 to June 4, 1999, and serves as an essential guide for researchers, practitioners, and enthusiasts in the field.
The book 'Computer Algebra in Scientific Computing CASC’99' gathers an impressive array of papers presented during the workshop, each dissecting different aspects of computer algebra's role in scientific computation. This collection is an invaluable resource that delves into the theoretical and practical advancements shaping contemporary scientific computing. It covers topics ranging from symbolic and algebraic computation to algorithmic developments and their applications in real-world scientific problems. The discussions within these proceedings highlight how symbolic computation systems, often used for exact arithmetic and algebraic manipulations, significantly contribute to numerical algorithms and enhance their efficiency and accuracy.
Among the key themes addressed are the integration of symbolic paradigms in computer algebra systems, the simplification of complex algebraic equations, and the exploration of new paradigms in algorithm development. By understanding the theoretical backbone behind these languages and tools, researchers can better leverage them for solving intricate scientific computations that demand high precision and robust analytical strategies.
"Algebraic expression manipulations are the cornerstone of computational evolution, promising new horizons in scientific problem-solving."
"Symbolic computation is no longer just an academic exercise but a pivotal element in applied scientific research."
This book matters because it bridges the gap between theoretical algorithmic development and practical computation needs in scientific research. CASC’99 provides deep insights into collaborative approaches and technological enhancements that propel scientific inquiry forward. The discussions, case studies, and papers compiled in this book are critical for anyone interested in mastering the art and science of computational techniques, particularly those at the intersection of algebra and real-world applications.
Furthermore, the publication sheds light on how the collaboration among experts from different sectors can yield powerful technological tools that address emerging challenges in computation. It stands as an authoritative reference for academic and professional communities committed to exploring the frontiers of digital algebra systems and their implementation in scientific discovery.
For researchers, practitioners, and students, 'Computer Algebra in Scientific Computing CASC’99' offers a curated look at the legacy and evolution of computational methods with enduring relevance. The book, while a product of its time, continues to influence contemporary thought and practice in the nexus of computer science and mathematics.
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