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Handbook of Continued Fractions for Special Functions
  • Language: en
  • Pages: 430

Handbook of Continued Fractions for Special Functions

Special functions are pervasive in all fields of science and industry. The most well-known application areas are in physics, engineering, chemistry, computer science and statistics. Because of their importance, several books and websites (see for instance http: functions.wolfram.com) and a large collection of papers have been devoted to these functions. Of the standard work on the subject, the Handbook of mathematical functions with formulas, graphs and mathematical tables edited by Milton Abramowitz and Irene Stegun, the American National Institute of Standards claims to have sold over 700 000 copies! But so far no project has been devoted to the systematic study of continued fraction representations for these functions. This handbook is the result of such an endeavour. We emphasise that only 10% of the continued fractions contained in this book, can also be found in the Abramowitz and Stegun project or at the Wolfram website!

Large-Scale Scientific Computing
  • Language: en
  • Pages: 493

Large-Scale Scientific Computing

This book constitutes the thoroughly refereed post-proceedings of the 4th International Conference on Large-Scale Scientific Computations, LSSC 2003, held in Sozopol, Bulgaria in June 2003. The 50 revised full papers presented together with 5 invited papers were carefully reviewed and selected for inclusion in the book. The papers are organized in topical sections on preconditioning techniques, Monte Carlo methods and quasi-Monte-Carlo methods, set-value of numerics and reliable computing, environmental modeling, and large-scale computations for engineering problems.

The Mathematical-Function Computation Handbook
  • Language: en
  • Pages: 1145

The Mathematical-Function Computation Handbook

  • Type: Book
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  • Published: 2017-08-20
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  • Publisher: Springer

This highly comprehensive handbook provides a substantial advance in the computation of elementary and special functions of mathematics, extending the function coverage of major programming languages well beyond their international standards, including full support for decimal floating-point arithmetic. Written with clarity and focusing on the C language, the work pays extensive attention to little-understood aspects of floating-point and integer arithmetic, and to software portability, as well as to important historical architectures. It extends support to a future 256-bit, floating-point format offering 70 decimal digits of precision. Select Topics and Features: references an exceptionally...

Nonlinear Methods in Numerical Analysis
  • Language: en
  • Pages: 289

Nonlinear Methods in Numerical Analysis

  • Type: Book
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  • Published: 1987-03-01
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  • Publisher: Elsevier

While most textbooks on Numerical Analysis discuss linear techniques for the solution of various numerical problems, this book introduces and illustrates nonlinear methods. It presents several nonlinear techniques resulting mainly from the use of Padé approximants and rational interpolants.

Multivariate Reciprocal Differences for Branched Thiele Continued Fraction Expansions
  • Language: en
  • Pages: 22
SIAM Journal on Scientific Computing
  • Language: en
  • Pages: 804

SIAM Journal on Scientific Computing

  • Type: Book
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  • Published: 2005
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  • Publisher: Unknown

None

ACM SIGPLAN Notices
  • Language: en
  • Pages: 894

ACM SIGPLAN Notices

  • Type: Book
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  • Published: 1997
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  • Publisher: Unknown

None

Different Techniques for the Construction of Multivariate Rational Interpolants
  • Language: en
  • Pages: 48
Accuracy and Stability of Numerical Algorithms
  • Language: en
  • Pages: 710

Accuracy and Stability of Numerical Algorithms

  • Type: Book
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  • Published: 2002-01-01
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  • Publisher: SIAM

Accuracy and Stability of Numerical Algorithms gives a thorough, up-to-date treatment of the behavior of numerical algorithms in finite precision arithmetic. It combines algorithmic derivations, perturbation theory, and rounding error analysis, all enlivened by historical perspective and informative quotations. This second edition expands and updates the coverage of the first edition (1996) and includes numerous improvements to the original material. Two new chapters treat symmetric indefinite systems and skew-symmetric systems, and nonlinear systems and Newton's method. Twelve new sections include coverage of additional error bounds for Gaussian elimination, rank revealing LU factorizations, weighted and constrained least squares problems, and the fused multiply-add operation found on some modern computer architectures.

Modern Computer Arithmetic
  • Language: en
  • Pages: 238

Modern Computer Arithmetic

Modern Computer Arithmetic focuses on arbitrary-precision algorithms for efficiently performing arithmetic operations such as addition, multiplication and division, and their connections to topics such as modular arithmetic, greatest common divisors, the Fast Fourier Transform (FFT), and the computation of elementary and special functions. Brent and Zimmermann present algorithms that are ready to implement in your favourite language, while keeping a high-level description and avoiding too low-level or machine-dependent details. The book is intended for anyone interested in the design and implementation of efficient high-precision algorithms for computer arithmetic, and more generally efficient multiple-precision numerical algorithms. It may also be used in a graduate course in mathematics or computer science, for which exercises are included. These vary considerably in difficulty, from easy to small research projects, and expand on topics discussed in the text. Solutions to selected exercises are available from the authors.