376,73 €
418,59 €
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Numerical Methods for Roots of Polynomials - Part I
Numerical Methods for Roots of Polynomials - Part I
376,73
418,59 €
  • We will send in 10–14 business days.
Numerical Methods for Roots of Polynomials - Part I (along with volume 2 covers most of the traditional methods for polynomial root-finding such as Newton's, as well as numerous variations on them invented in the last few decades. Perhaps more importantly it covers recent developments such as Vincent's method, simultaneous iterations, and matrix methods. There is an extensive chapter on evaluation of polynomials, including parallel methods and errors. There are pointers to robust and efficient…
  • Publisher:
  • ISBN-10: 044452729X
  • ISBN-13: 9780444527295
  • Format: 17.2 x 24.2 x 2 cm, hardcover
  • Language: English
  • SAVE -10% with code: EXTRA

Numerical Methods for Roots of Polynomials - Part I (e-book) (used book) | bookbook.eu

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Numerical Methods for Roots of Polynomials - Part I (along with volume 2 covers most of the traditional methods for polynomial root-finding such as Newton's, as well as numerous variations on them invented in the last few decades. Perhaps more importantly it covers recent developments such as Vincent's method, simultaneous iterations, and matrix methods. There is an extensive chapter on evaluation of polynomials, including parallel methods and errors. There are pointers to robust and efficient programs. In short, it could be entitled "A Handbook of Methods for Polynomial Root-finding". This book will be invaluable to anyone doing research in polynomial roots, or teaching a graduate course on that topic.

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  • Author: J M McNamee
  • Publisher:
  • ISBN-10: 044452729X
  • ISBN-13: 9780444527295
  • Format: 17.2 x 24.2 x 2 cm, hardcover
  • Language: English English

Numerical Methods for Roots of Polynomials - Part I (along with volume 2 covers most of the traditional methods for polynomial root-finding such as Newton's, as well as numerous variations on them invented in the last few decades. Perhaps more importantly it covers recent developments such as Vincent's method, simultaneous iterations, and matrix methods. There is an extensive chapter on evaluation of polynomials, including parallel methods and errors. There are pointers to robust and efficient programs. In short, it could be entitled "A Handbook of Methods for Polynomial Root-finding". This book will be invaluable to anyone doing research in polynomial roots, or teaching a graduate course on that topic.

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