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1
Applied cryptography : protocols, algorithms, and source code in C / Bruce Schneier
New York : Wiley, 2002
xxiii, 758 pages. : illustrations ; 24 cm.
Ký hiệu phân loại (DDC): 005.82
This new edition of the cryptography classic provides you with a comprehensive survey of modern cryptography. The book details how programmers and electronic communications professionals can use cryptography - the technique of enciphering and deciphering messages - to maintain the privacy of computer data. It describes dozens of cryptography algorithms, gives practical advice on how to implement them into cryptographic software, and shows how they can be used to solve security problems. Covering the latest developments in practical cryptographic techniques, this new edition shows programmers who design computer applications, networks, and storage systems how they can build security into their software and systems.
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2
Bitcoin and cryptocurrency technologies :a comprehensive introduction /Arvind Narayanan, Joseph Bonneau, Edward Felten, Andrew Miller, and Steven Goldfeder.
Princeton, New Jersey : Princeton University Press, 2016
xxvii, 304 p. : illustrations ; 27 cm.
Ký hiệu phân loại (DDC): 332.178
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3
Circuit engineering : the beginners guide to electronic circuits, semi-conductors, circuit boards, and basic electronics / Solis Tech
[North Charleston, S.C.] : [CreateSpace], 2015
99 p. ; cm.
Ký hiệu phân loại (DDC): 621.3815
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4
Cryptography and Network Security : Principles and Pracice /William Stallings
Boston : Pearson, 2017
766 pages. ; 24 cm.
Ký hiệu phân loại (DDC): 005.8
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5
Cryptography Made Simple / Nigel P. Smart
Cham, Switzerland : Springer, 2016
478 p. ; cm.
Ký hiệu phân loại (DDC): 005.82
In this introductory textbook the author explains the key topics in cryptography. He takes a modern approach, where defining what is meant by "secure" is as important as creating something that achieves that goal, and security definitions are central to the discussion throughout. The chapters in Part 1 offer a brief introduction to the mathematical foundations: modular arithmetic, groups, finite fields, and probability; primality testing and factoring; discrete logarithms; elliptic curves; and lattices. Part 2 of the book shows how historical ciphers were broken, thus motivating the design of modern cryptosystems since the 1960s; this part also includes a chapter on information-theoretic security. Part 3 covers the core aspects of modern cryptography: the definition of security; modern stream ciphers; block ciphers and modes of operation; hash functions, message authentication codes, and key derivation functions; the "naive" RSA algorithm; public key encryption and signature algorithms; cryptography based on computational complexity; and certificates, key transport and key agreement. Finally, Part 4 addresses advanced prot ocols, where the parties may have different or even conflicting security goals: secret sharing schemes; commitments and oblivious transfer; zero-knowledge proofs; and secure multi-party computation. The author balances a largely non-rigorous style -- many proofs are sketched only -- with appropriate formality and depth. For example, he uses the terminology of groups and finite fields so that the reader can understand both the latest academic research and "real-world" documents such as application programming interface descriptions and cryptographic standards. The text employs colour to distinguish between public and private information, and all chapters include summaries and suggestions for further reading. This is a suitable textbook for advanced undergraduate and graduate students in computer science, mathematics and engineering, and for self-study by professionals in information security. While the appendix summarizes most of the basic algebra and notation required, it is assumed that the reader has a basic knowledge of discrete mathematics, probability, and elementary calculus.
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