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Elliptic Curves - Number Theory and Cryptography, Second Edition (Hardcover, 2nd edition): Lawrence C. Washington Elliptic Curves - Number Theory and Cryptography, Second Edition (Hardcover, 2nd edition)
Lawrence C. Washington
R5,808 Discovery Miles 58 080 Ships in 10 - 15 working days

Like its bestselling predecessor, Elliptic Curves: Number Theory and Cryptography, Second Edition develops the theory of elliptic curves to provide a basis for both number theoretic and cryptographic applications. With additional exercises, this edition offers more comprehensive coverage of the fundamental theory, techniques, and applications of elliptic curves.

New to the Second Edition Chapters on isogenies and hyperelliptic curves A discussion of alternative coordinate systems, such as projective, Jacobian, and Edwards coordinates, along with related computational issues A more complete treatment of the Weil and Tate-Lichtenbaum pairings Doud's analytic method for computing torsion on elliptic curves over Q An explanation of how to perform calculations with elliptic curves in several popular computer algebra systems

Taking a basic approach to elliptic curves, this accessible book prepares readers to tackle more advanced problems in the field. It introduces elliptic curves over finite fields early in the text, before moving on to interesting applications, such as cryptography, factoring, and primality testing. The book also discusses the use of elliptic curves in Fermat's Last Theorem. Relevant abstract algebra material on group theory and fields can be found in the appendices.

Introduction to Cyclotomic Fields (Paperback, 2nd ed. 1997. Softcover reprint of the original 2nd ed. 1997): Lawrence C.... Introduction to Cyclotomic Fields (Paperback, 2nd ed. 1997. Softcover reprint of the original 2nd ed. 1997)
Lawrence C. Washington
R2,257 Discovery Miles 22 570 Ships in 18 - 22 working days

This text on a central area of number theory covers p-adic L-functions, class numbers, cyclotomic units, Fermat's Last Theorem, and Iwasawa's theory of Z_p-extensions. This edition contains a new chapter on the work of Thaine, Kolyvagin, and Rubin, including a proof of the Main Conjecture, as well as a chapter on other recent developments, such as primality testing via Jacobi sums and Sinnott's proof of the vanishing of Iwasawa's f-invariant.

Elementary Number Theory (Hardcover): James S. Kraft, Lawrence C. Washington Elementary Number Theory (Hardcover)
James S. Kraft, Lawrence C. Washington
R2,829 Discovery Miles 28 290 Ships in 10 - 15 working days

Elementary Number Theory takes an accessible approach to teaching students about the role of number theory in pure mathematics and its important applications to cryptography and other areas. The first chapter of the book explains how to do proofs and includes a brief discussion of lemmas, propositions, theorems, and corollaries. The core of the text covers linear Diophantine equations; unique factorization; congruences; Fermat's, Euler's, and Wilson's theorems; order and primitive roots; and quadratic reciprocity. The authors also discuss numerous cryptographic topics, such as RSA and discrete logarithms, along with recent developments. The book offers many pedagogical features. The "check your understanding" problems scattered throughout the chapters assess whether students have learned essential information. At the end of every chapter, exercises reinforce an understanding of the material. Other exercises introduce new and interesting ideas while computer exercises reflect the kinds of explorations that number theorists often carry out in their research.

Introduction to Cyclotomic Fields (Hardcover, 2nd ed. 1997): Lawrence C. Washington Introduction to Cyclotomic Fields (Hardcover, 2nd ed. 1997)
Lawrence C. Washington
R1,764 R1,376 Discovery Miles 13 760 Save R388 (22%) Ships in 10 - 15 working days

Introduction to Cyclotomic Fields is a carefully written exposition of a central area of number theory that can be used as a second course in algebraic number theory. Starting at an elementary level, the volume covers p-adic L-functions, class numbers, cyclotomic units, Fermat's Last Theorem, and Iwasawa's theory of Z_p-extensions, leading the reader to an understanding of modern research literature. Many exercises are included. The second edition includes a new chapter on the work of Thaine, Kolyvagin, and Rubin, including a proof of the Main Conjecture. There is also a chapter giving other recent developments, including primality testing via Jacobi sums and Sinnott's proof of the vanishing of Iwasawa's f-invariant.

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