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Cryptography and Network Security

Principles and Practice (POD File)

E-book Engels 2021 9780135307496
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Samenvatting

This is the eBook of the printed book and may not include any media, website access codes, or print supplements that may come packaged with the bound book.

The Principles and Practice of Cryptography and Network Security

Stallings’ Cryptography and Network Security, Seventh Edition, introduces the reader to the compelling and evolving field of cryptography and network security. In an age of viruses and hackers, electronic eavesdropping, and electronic fraud on a global scale, security is paramount. The purpose of this book is to provide a practical survey of both the principles and practice of cryptography and network security. In the first part of the book, the basic issues to be addressed by a network security capability are explored by providing a tutorial and survey of cryptography and network security technology. The latter part of the book deals with the practice of network security: practical applications that have been implemented and are in use to provide network security.

 

The Seventh Edition streamlines subject matter with new and updated material — including Sage, one of the most important features of the book. Sage is an open-source, multiplatform, freeware package that implements a very powerful, flexible, and easily learned mathematics and computer algebra system. It provides hands-on experience with cryptographic algorithms and supporting homework assignments. With Sage, the reader learns a powerful tool that can be used for virtually any mathematical application. The book also provides an unparalleled degree of support for the reader to ensure a successful learning experience.

Specificaties

ISBN13:9780135307496
Taal:Engels
Bindwijze:e-book
Uitgever:Pearson Education
Hoofdrubriek:

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Inhoudsopgave

<p style="MARGIN: 0px">1. Computer and Network Security Concepts </p> <p style="MARGIN: 0px">2. Introduction to Number Theory </p> <p style="MARGIN: 0px">3. Classical Encryption Techniques </p> <p style="MARGIN: 0px">4. Block Ciphers and the Data Encryption Standard </p> <p style="MARGIN: 0px">5. Finite Fields </p> <p style="MARGIN: 0px">6. Advanced Encryption Standard </p> <p style="MARGIN: 0px">7. Block Cipher Operation </p> <p style="MARGIN: 0px">8. Random Bit Generation and Stream Ciphers </p> <p style="MARGIN: 0px">9. Public-Key Cryptography and RSA </p> <p style="MARGIN: 0px">10. Other Public-Key Cryptosystems </p> <p style="MARGIN: 0px">11. Cryptographic Hash Functions </p> <p style="MARGIN: 0px">12. Message Authentication Codes </p> <p style="MARGIN: 0px">13. Digital Signatures </p> <p style="MARGIN: 0px">14. Key Management and Distribution </p> <p style="MARGIN: 0px">15. User Authentication Protocols </p> <p style="MARGIN: 0px">16. Network Access Control and Cloud Security </p> <p style="MARGIN: 0px">17. Transport-Level Security </p> <p style="MARGIN: 0px">18. Wireless Network Security </p> <p style="MARGIN: 0px">19. Electronic Mail Security </p> <p style="MARGIN: 0px">20. IP Security </p> <p style="MARGIN: 0px">&nbsp;</p> <p style="MARGIN: 0px">Appendix A Projects for Teaching Cryptography and Network Security</p> <p style="MARGIN: 0px">Appendix B Sage Examples </p>

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        Cryptography and Network Security