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Hilbert's 10th Problem
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Hilbert's 10th Problem Hardcover - 1993

by Yuri Matiyasevich; Foreword by Martin Davis; Foreword by Hilary Putnam


From the publisher

This book presents the full, self-contained negative solution of Hilbert's 10th problem.

At the 1900 International Congress of Mathematicians, held that year in Paris, the German mathematician David Hilbert put forth a list of 23 unsolved problems that he saw as being the greatest challenges for twentieth-century mathematics. Hilbert's 10th problem, to find a method (what we now call an algorithm) for deciding whether a Diophantine equation has an integral solution, was solved by Yuri Matiyasevich in 1970. Proving the undecidability of Hilbert's 10th problem is clearly one of the great mathematical results of the century.This book presents the full, self-contained negative solution of Hilbert's 10th problem. In addition it contains a number of diverse, often striking applications of the technique developed for that solution (scattered previously in journals), describes the many improvements and modifications of the original proof - since the problem was unsolved 20 years ago, and adds several new, previously unpublished proofs. Included are numerous exercises that range in difficulty from the elementary to small research problems, open questions, and unsolved problems. Each chapter concludes with a commentary providing a historical view of its contents. And an extensive bibliography contains references to all of the main publications directed to the negative solution of Hilbert's 10th problem as well as the majority of the publications dealing with applications of the solution. Intended for young mathematicians, Hilbert's 10th Problem requires only a modest mathematical background. A few less well known number-theoretical results are presented in the appendixes. No knowledge of recursion theory is presupposed. All necessary notions are introduced and defined in the book, making it suitable for the first acquaintance with this fascinating subject.

First line

Let us recall that a Diophantine equation is an equation of the form D(x1, . . . , xm) = 0, (1.1.1) where D is a polynomial with integer coefficients.

Details

  • Title Hilbert's 10th Problem
  • Author Yuri Matiyasevich; Foreword by Martin Davis; Foreword by Hilary Putnam
  • Binding Hardcover
  • Edition F First Edition
  • Pages 288
  • Volumes 1
  • Language ENG
  • Publisher MIT Press, Cambridge, MA
  • Date October 13, 1993
  • Illustrated Yes
  • ISBN 9780262132954 / 0262132958
  • Weight 1.35 lbs (0.61 kg)
  • Dimensions 9.29 x 7.36 x 0.85 in (23.60 x 18.69 x 2.16 cm)
  • Ages 18 to UP years
  • Grade levels 13 - UP
  • Library of Congress subjects Computable functions, Hilbert's tenth problem
  • Library of Congress Catalog Number 93-28107
  • Dewey Decimal Code 512.7

About the author

Yuri Matiyasevich is Head of the Laboratory of Mathematical Logic, Steklov Institute of Mathematics, Russian Academy of Sciences, Saint Petersburg.

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Hilbert's 10th Problem (Foundations of Computing)
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Hilbert's 10th Problem (Foundations of Computing)

by Matiyasevich, Yuri

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Hilbert's 10th Problem (Foundations of Computing)
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Hilbert's 10th Problem (Foundations of Computing)

by Yuri Matiyasevich; Foreword-Martin Davis; Foreword-Hilary Putnam

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  • Hardcover
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ISBN 10 / ISBN 13
9780262132954 / 0262132958
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The MIT Press, 1993-10-13. Hardcover. Good.
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$259.85
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