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A group consists of courses that have the same role in a study plan. A group thus facilitates the requirement on credits to be acquired in a prescribed structure for a study plan. Hence, a student just cannot accumulate the required amount of credits required by the study plan; s/he must meet the requirements of each group of courses of a given study plan.
       Each student has to complete either at least a prescribed minimum (amount of) credits or to successfully complete a prescribed minimum (amount of) courses for a given group.
If a group has defined a minimum amount of credits = total amount of credits that can be obtained from the group, the student must successfully complete all the courses of the group. Such a group of courses has its role marked as 'compulsory'. If a group has defined a minimum amount of credits < total amount of credits obtainable from the group, such a situation is referred to as a group with an obligation to choose and complete at least the minimally set amount of credits. Similarly for courses.
If a group has defined a minimum amount of credits = 0 and a minimum number of courses = 0 at the same time, then the courses in the given group are elective.
Ifa a group has defined a minimum amount of credits < maximum amount of credits < total amount of credits obtainable from the group, then credits earned earned above the minimum amount of credits are seen as elective and credits above the maximum amount of credits from a given group do not count.
For ease of reference, each group has a role of the courses in the given study plan assigned next to its name.
The list is sorted alphabetically by the Department code and Course title.
Group: Elective Vocational Courses for Master Branch MIE-PSS
Min. credits: 0   Credits total: 26   Min. courses: 0 Role: V - Elective Modules
Course Course title Extend of
teaching
Comple-
tion
Seme-
ster
Recomm.
sem.
Cre-
dits
Instruc-
tor
Cat.
MIE-ADP.16 Architecture and Design Patterns 2+1 Z,ZK Z 1 5 Špaček P. 18102
MIE-NFA.16 Design for the FPGA and ASIC Technology 2+1 Z,ZK Z 1 5 Schmidt J. 18103
MIE-SIM.16 Digital Circuit Simulation 2+1 Z,ZK Z 1 5 Douša J., Kohlík M. 18103
MIE-TES.16 Systems Theory 2+1 Z,ZK Z 1 5 Ratschan S. 18103
MIE-KRY.16 Advanced Cryptology 2+2 Z,ZK Z 1 5 Lórencz R. 18106
MIE-REV.16 Reverse Engineering 1+2 Z,ZK Z 1 5 Kokeš J. 18106
MIE-PIS.16 Advanced Information Systems 2+1 Z,ZK L 2 5 Kroha P. 18102
MIE-FME.16 Formal Methods and Specifications 2+1 Z,ZK L 2 5 Ratschan S. 18102
MI-NSS.16 Normalized Software Systems 2+0 ZK L 2 5 Pergl R., Verelst J. 18102
MIE-BKO.16 Error Control Codes 2+1 Z,ZK L 2 5 Kubalík P. 18103
MIE-BHW.16 Security and Hardware 2+2 Z,ZK L 2 5 Novotný M. 18103
MIE-MKY.16 Mathematics for Cryptology 3+1 Z,ZK L 2 5 Petr I., Starosta Š. 18105
MIE-HWB.16 Hardware Security 2+2 Z,ZK L 2 5 Buček J., Lórencz R. 18106
MIE-PDB.16 Advanced Database Systems 2+1 Z,ZK L 3 5 Svoboda M. 18102
MIE-NUR.16 User Interface Design 2+1 Z,ZK Z 3 5 Žikovský P. 18102
MIE-SOC.16 Systems on Chip 2+1 Z,ZK Z 3 5 Kubátová H. 18103
MIE-TSP.16 Testing and Reliability 2+2 Z,ZK Z 3 5 Fišer P. 18103

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Page updated 23. 3. 2019, semester: Z/2018-9, Z/2019-20, L/2018-9, L/2017-8, Send comments to the content presented here toAdministrator of study plans Design and implementation: J. Novák, I. Halaška