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An Introduction to Mathematical Cryptography (Undergraduate Texts in Mathematics)

An Introduction to Mathematical Cryptography (Undergraduate Texts in Mathematics)

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Authors: Jeffrey Hoffstein, Jill Pipher, J.h. Silverman
Publisher: Springer
Category: Book

List Price: $49.95
Buy New: $39.96
You Save: $9.99 (20%)



New (17) Used (3) from $39.96

Sales Rank: 411947

Media: Hardcover
Edition: 1
Number Of Items: 1
Pages: 524
Shipping Weight (lbs): 1.9
Dimensions (in): 9.3 x 6.2 x 1.2

ISBN: 0387779930
Dewey Decimal Number: 652.80151
EAN: 9780387779935
ASIN: 0387779930

Publication Date: August 12, 2008
Shipping: Eligible for Super Saver Shipping
Availability: Usually ships in 24 hours

Similar Items:

  • Introduction to Modern Cryptography: Principles and Protocols (Chapman & Hall/Crc Cryptography and Network Security Series)
  • Codes: An Introduction to Information Communication and Cryptography (Springer Undergraduate Mathematics Series)
  • Elliptic Curves: Number Theory and Cryptography, Second Edition (Discrete Mathematics and Its Applications)
  • An Introduction to the Theory of Numbers
  • Modern Cryptanalysis: Techniques for Advanced Code Breaking

Editorial Reviews:

Product Description

This self-contained introduction to modern cryptography emphasizes the mathematics behind the theory of public key cryptosystems and digital signature schemes. The book focuses on these key topics while developing the mathematical tools needed for the construction and security analysis of diverse cryptosystems. Only basic linear algebra is required of the reader; techniques from algebra, number theory, and probability are introduced and developed as required.

The book covers a variety of topics that are considered central to mathematical cryptography. Key topics include:

* classical cryptographic constructions, such as Diffie-Hellmann key exchange, discrete logarithm-based cryptosystems, the RSA cryptosystem, and digital signatures;

* fundamental mathematical tools for cryptography, including primality testing, factorization algorithms, probability theory, information theory, and collision algorithms;

* an in-depth treatment of important recent cryptographic innovations, such as elliptic curves, elliptic curve and pairing-based cryptography, lattices, lattice-based cryptography, and the NTRU cryptosystem.

Additional topics, including hash functions, pseudorandom number generators, zero-knowledge proofs, digital cash and DES/AES, are briefly described in the final chapter. This book is an ideal introduction for mathematics and computer science students to the mathematical foundations of modern cryptography. The book includes an extensive bibliography and index; supplementary materials are available online.




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