SubjectsSubjects(version: 945)
Course, academic year 2023/2024
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Applied Cryptography 1 - NMMB301
Title: Aplikovaná kryptografie 1
Guaranteed by: Department of Algebra (32-KA)
Faculty: Faculty of Mathematics and Physics
Actual: from 2021
Semester: winter
E-Credits: 3
Hours per week, examination: winter s.:2/0, Ex [HT]
Capacity: unlimited
Min. number of students: unlimited
4EU+: no
Virtual mobility / capacity: no
State of the course: not taught
Language: Czech
Teaching methods: full-time
Teaching methods: full-time
Guarantor: RNDr. Bohuslav Rudolf
Class: M Bc. MMIB
M Bc. MMIB > Povinně volitelné
M Bc. MMIT
M Bc. MMIT > Povinně volitelné
Classification: Mathematics > Algebra
Incompatibility : NMIB006
Interchangeability : NMIB006, NMMB332
Is co-requisite for: NMMB302
Is pre-requisite for: NMMB349
Is interchangeable with: NMMB332, NMIB006
Annotation -
Last update: G_M (16.05.2012)
Required course for bachelor's program in Information security. The course focuses on practical use of modern cryptography. Student will gain overview of suitability and use of concrete algorithms and their analysis.
Course completion requirements -
Last update: doc. Mgr. et Mgr. Jan Žemlička, Ph.D. (28.10.2019)

Students have to pass final oral exam.

Literature -
Last update: doc. Mgr. et Mgr. Jan Žemlička, Ph.D. (24.08.2012)

Shafi Goldwasser, Mihir Bellare: Lecture Notes on Cryptography, 2008, http://cseweb.ucsd.edu/~mihir/papers/gb.pdf

Jonathan Katz, Yehuda Lindell: Introduction to Modern Cryptography, 2008, Taylor and Francis Group, LLC

Serge Vaudenay: A Classical Introduction to Cryptography - Applications for Communication Security, 2006, Springer Science + Business Media, Inc.

Requirements to the exam -
Last update: doc. Mgr. et Mgr. Jan Žemlička, Ph.D. (28.10.2019)

Students have to pass final oral exam. The requirements for the exam correspond to what has been done during lectures.

Syllabus -
Last update: doc. Mgr. et Mgr. Jan Žemlička, Ph.D. (03.09.2012)

Block and stream ciphers, hash functions - design principles, security and implementation properties, symmetric encryption modes and integrity protection - security and implementation properties, provable and practical security, introduction to cryptographic protocols - design principles, formal, provable and practical security.

 
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