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Titlebook: Introduction to Cryptography with Maple; José Luis Gómez Pardo Textbook 2013 Springer-Verlag Berlin Heidelberg 2013 Maple.algorithmic numb

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书目名称Introduction to Cryptography with Maple
编辑José Luis Gómez Pardo
视频video
概述Employs a programming-oriented approach to study the most important cryptographic schemes and cryptanalytic attacks.Provides implementations of the algorithms and schemes and examples of realistic siz
图书封面Titlebook: Introduction to Cryptography with Maple;  José Luis Gómez Pardo Textbook 2013 Springer-Verlag Berlin Heidelberg 2013 Maple.algorithmic numb
描述.This introduction to cryptography employs a programming-oriented approach to study the most important cryptographic schemes in current use and the main cryptanalytic attacks against them. Discussion of the theoretical aspects, emphasizing precise security definitions based on methodological tools such as complexity and randomness, and of the mathematical aspects, with emphasis on number-theoretic algorithms and their applications to cryptography and cryptanalysis, is integrated with the programming approach, thus providing implementations of the algorithms and schemes as well as examples of realistic size. .A distinctive feature of the author‘s approach is the use of Maple as a programming environment in which not just the cryptographic primitives but also the most important cryptographic schemes are implemented following the recommendations of standards bodies such as NIST, with many of the known cryptanalytic attacks implemented as well. The purpose of the Maple implementations is to let the reader experiment and learn, and for this reason the author includes numerous examples. The book discusses important recent subjects such as homomorphic encryption, identity-based cryptograp
出版日期Textbook 2013
关键词Maple; algorithmic number theory; block ciphers; ciphers; digital signatures; elliptic curve cryptography
版次1
doihttps://doi.org/10.1007/978-3-642-32166-5
isbn_softcover978-3-642-44621-4
isbn_ebook978-3-642-32166-5
copyrightSpringer-Verlag Berlin Heidelberg 2013
The information of publication is updating

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Message Authentication,th the use of encryption and decryption. But, important as confidentiality is, modern cryptography goes far beyond this objective and message authentication and message integrity are perhaps even more important goals. In this chapter we will look at techniques that provide message integrity in the p
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Algorithmic Number Theory for Cryptography and Cryptanalysis: Primality, Factoring and Discrete Logy of the constructions and algorithms discussed. Also, computational number-theoretic problems which are presumed to be hard made their appearance and we mentioned, in particular, the integer factorization problem and the discrete logarithm problem. In the coming chapters we will study publickey cry
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Public-Key Encryption,ion between two parties that do not have to share a common secret key. Public-key cryptography started with the realization that it should be possible to design encryption schemes in which it is computationally infeasible to find the decryption algorithm from the encryption one. This, in turn, entai
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Digital Signatures,tance in fields like ecomerce and e-banking, where physical protection of exchanged data is impossible. A reasonable guarantee of data authenticity in the private-key setting can be obtained by using a MAC. However, the requirement that the parties share a secret key severely limits the applicabilit
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Identity-Based Cryptography,it the wide deployment of public-key cryptography, in particular, the problem of binding public keys with user identities. The basic idea of IBC starts from the realization that there is some minimal information that a user has to learn before communicating with another party, even in unencrypted fo
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