Modern Cryptography Theory and Practice

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Modern Cryptography Theory and Practice
Book Type:
Author:
Wenbo Mao
Publisher:
Prentice Hall
ISBN:
9780132887410
Publication Date:
-
Edition:
2004
Format:
Paperback
Item Location:
ROW4
Availability:

Availability: In stock

Price:
$95.95
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DESCRIPTION
Appropriate for all graduate-level and advanced undergraduate courses in cryptography and related mathematical fields. Modern Cryptography is an indispensable resource for every advanced student of cryptography who intends to implement strong security in real-world applications. Leading HP security expert Wenbo Mao explains why conventional crypto schemes, protocols, and systems are profoundly vulnerable, introducing both fundamental theory and real-world attacks. Next, he shows how to implement crypto systems that are truly "fit for application," and formally demonstrate their fitness. He begins by reviewing the foundations of cryptography: probability, information theory, computational complexity, number theory, algebraic techniques, and more. He presents the "ideal" principles of authentication, comparing them with real-world implementation. Mao assesses the strength of IPSec, IKE, SSH, SSL, TLS, Kerberos, and other standards, and offers practical guidance on designing stronger crypto schemes and using formal methods to prove their security and efficiency. Finally, he presents an in-depth introduction to zero-knowledge protocols: their characteristics, development, arguments, and proofs. Mao relies on practical examples throughout, and provides all the mathematical background students will need.
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AUTHOR INFORMATION
WENBO MAO, PhD, is a Technical Contributor to the Trusted Systems Lab at Hewlett-Packard Laboratories, Bristol, UK. Mao leads HP's participation and research activities in Computer Aided Solutions to Secure Electronic Commerce Transactions (CASENET), a research project funded by the European Union. His research interests include cryptography, computer security, and formal methods. He is a member of the International Association for Cryptographic Research (IACR), the Institute of Electrical and Electronics Engineers (IEEE), and the British Computer Society (BCS).

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