Subject |
Name |
Extent of teaching |
Language of teaching |
Completion
|
Semester
|
Credits
|
Guarantors |
Teachers |
A8M36ACA |
Advanced Computer Architectures |
2P+2L |
CS |
Z,ZK |
Z |
5 |
|
|
BE4M35PAP |
Advanced Computer Architectures |
2P+2C |
EN |
Z,ZK |
Z |
6 |
Píša P. |
|
B4M35PAP |
Advanced Computer Architectures |
2P+2C |
CS |
Z,ZK |
Z |
6 |
Píša P. |
|
AD3B35APE |
Applied electronics |
14KP+6KC |
CS |
Z,ZK |
L |
6 |
|
|
AE3B35APE |
Applied Electronics |
2P+2L |
EN |
Z,ZK |
L |
6 |
|
|
A3B35APE |
Applied electronics |
2P+2L |
CS |
Z,ZK |
L |
6 |
|
|
AD3B35APO |
Architektura počítačů |
14KP+6KC |
CS |
Z,ZK |
L |
6 |
|
|
AD4B35APO |
Architektura počítačů |
14KP+6KC |
CS |
Z,ZK |
L |
6 |
|
|
BE3M35APH |
Atmospheric Physics |
2P+2S |
EN |
Z,ZK |
L |
8 |
|
|
AD3B35ARI |
Automatic Control |
28KP+6KC |
CS |
Z,ZK |
L |
7 |
|
|
AE3B35ARI |
Automatic Control |
4P+2L |
EN |
Z,ZK |
L |
7 |
|
|
A3B35ARI |
Automatic Control |
4P+2L |
CS |
Z,ZK |
L |
7 |
|
|
BE5B35ARI |
Automatic Control |
4P+2L |
EN |
Z,ZK |
L |
7 |
Hromčík M. |
|
B3B35ARI1 |
Automatic Control |
4P+2L |
CS |
Z,ZK |
L |
6 |
Šebek M. |
|
B3B35ARI |
Automatic Control |
4P+2L |
CS |
Z,ZK |
L |
7 |
|
|
BE3M35RSA |
Automotive Control Systems |
2P+2S |
EN |
Z,ZK |
|
6 |
Haniš T. |
|
B3M35RSA |
Automotive Control Systems |
2P+2S |
CS |
Z,ZK |
|
6 |
Haniš T. |
|
RM35RSA |
Automotive Control Systems |
2P+2S |
CS |
Z,ZK |
|
6 |
Haniš T. |
|
AE0B35BAP |
Bachelor Project |
28S |
EN |
Z |
L |
20 |
|
|
AE8B35BAP |
Bachelor Project |
7S |
|
Z |
L |
9 |
|
|
AD0B35BAP |
Bachelor thesis |
28S |
CS |
Z |
L |
20 |
|
|
A0B35BAP |
Bachelor thesis |
28S |
CS |
Z |
L |
20 |
|
|
A8B35BAP |
Bachelor thesis |
7S |
|
Z |
L |
9 |
|
|
BE3M35KOA |
Combinatorial Algorithms |
2P+2C |
EN |
Z,ZK |
L |
6 |
Hanzálek Z. |
|
B3M35KOA |
Combinatorial Algorithms |
2P+2C |
CS |
Z,ZK |
L |
6 |
Hanzálek Z. |
|
RM35KOA |
Combinatorial Algorithms |
2P+2C |
CS |
Z,ZK |
L |
6 |
Hanzálek Z. |
|
AD4M35KO |
Combinatorial Optimization |
21KP+6KC |
CS |
Z,ZK |
L |
6 |
|
|
AD4M77KO |
Combinatorial Optimization |
21KP+6KC |
CS |
Z,ZK |
L |
6 |
|
|
AE4M35KO |
Combinatorial Optimization |
3P+2C |
EN |
Z,ZK |
L |
6 |
|
|
AE4M77KO |
Combinatorial Optimization |
3P+2C |
EN |
Z,ZK |
L |
6 |
|
|
A4M35KO |
Combinatorial Optimization |
3P+2C |
CS |
Z,ZK |
L |
6 |
|
|
BE4M35KO |
Combinatorial Optimization |
3P+2C |
EN |
Z,ZK |
L |
6 |
Hanzálek Z. |
|
B4M35KO |
Combinatorial Optimization |
3P+2C |
CS |
Z,ZK |
L |
6 |
Hanzálek Z. |
|
RM35KO |
Combinatorial Optimization |
3P+2C |
CS |
Z,ZK |
L |
6 |
|
|
XEP35CMS |
Computational Methods for Materials Science |
2P+2C |
EN |
Z,ZK |
Z,L |
4 |
Cammarata A. |
|
AE4B35APO |
Computer Architecture |
2P+2C |
EN |
Z,ZK |
L |
6 |
|
|
AD0B36APO |
Computer Architectures |
14KP+6KC |
CS |
Z,ZK |
L |
6 |
|
|
AE0B36APO |
Computer Architectures |
2P+2L |
EN |
Z,ZK |
L |
6 |
|
|
AE3B36APO |
Computer Architectures |
2P+2L |
EN |
Z,ZK |
L |
6 |
|
|
A0B36APO |
Computer Architectures |
2P+2L |
CS |
Z,ZK |
L |
6 |
|
|
BE5B35APO |
Computer Architectures |
2P+2L |
EN |
Z,ZK |
L |
6 |
Píša P., Šusta R. |
|
B0B35APO |
Computer Architectures |
2P+2L |
CS |
Z,ZK |
L |
5 |
Píša P. |
|
AD0B35SPS |
Computer System Structures |
21KP+6KC |
CS |
Z,ZK |
Z |
6 |
|
|
AD3B35SPS |
Computer System Structures |
14KP+6KC |
CS |
Z,ZK |
Z |
6 |
|
|
AD4B35SPS |
Computer System Structures |
14KP+6KC |
CS |
Z,ZK |
Z |
6 |
|
|
AE0B35SPS |
Computer System Structures |
3P+2L |
EN |
Z,ZK |
Z |
6 |
|
|
AE3B35SPS |
Computer System Structures |
3P+2L |
EN |
Z,ZK |
Z |
6 |
|
|
AE4B35SPS |
Computer System Structures |
3P+2L |
EN |
Z,ZK |
Z |
6 |
|
|
A0B35SPS |
Computer System Structures |
3P+2L |
CS |
Z,ZK |
Z |
6 |
|
|
BE5B35SPS |
Computer System Structures |
3P+2L |
EN |
Z,ZK |
Z |
6 |
|
|
BE3M35CSA |
Control Systems for Aircraft and Spacecraft |
2P+2L |
EN |
Z,ZK |
Z |
7 |
|
|
AD3M35RIS |
Control Systems |
14KP+6KC |
CS |
Z,ZK |
Z |
6 |
|
|
AE3M35RIS |
Control Systems |
2P+2L |
EN |
Z,ZK |
Z |
6 |
|
|
A3M35RIS |
Control Systems |
2P+2L |
CS |
Z,ZK |
Z |
6 |
|
|
RM35RIS |
Control Systems |
2P+2L |
CS |
Z,ZK |
Z |
6 |
|
|
XP35CCM1 |
Cooperative control of multi-agent systems |
2P+2C |
EN |
ZK |
|
4 |
Hengster-Movric K. |
|
AD0M35DIP |
Diploma Thesis |
36S |
CS |
Z |
L |
25 |
|
|
AE0M35DIP |
Diploma Thesis |
36S |
EN |
Z |
L |
25 |
|
|
A0M35DIP |
Diploma Thesis |
36S |
CS |
Z |
L |
25 |
|
|
BE3M35DIP |
Diploma Thesis |
22S |
EN |
Z |
L |
30 |
|
|
A5M35DRS |
Distributed Control Systems |
2P+2C |
|
Z,ZK |
L |
4 |
|
|
B3M35DRS |
Dynamics and Control Networks |
2P+2C |
CS |
Z,ZK |
Z |
6 |
|
|
RM35DRS |
Dynamics and Control Networks |
2P+2C |
EN |
Z,ZK |
Z |
6 |
Hengster-Movric K. |
|
BE3M35DRS |
Dynamics and Control of Networks |
2P+2C |
EN |
Z,ZK |
Z |
6 |
Hengster-Movric K. |
|
BE3M35ELS |
Electronics in Space |
2P+2S |
EN |
Z,ZK |
L |
8 |
|
|
BE0M35EAS |
Elements of Atomistic Simulations |
2P+2L |
EN |
Z,ZK |
Z,L |
4 |
Cammarata A. |
|
XP35ESF1 |
Estimation and filtering |
2P+2C |
CS |
ZK |
|
4 |
Havlena V. |
|
AE3M35OFD |
Estimation, filtering and detection |
3P+1C |
EN |
Z,ZK |
Z |
6 |
|
|
BE3M35OFD |
Estimation, Filtering and Detection |
2P+2C |
EN |
Z,ZK |
Z |
6 |
Havlena V. |
|
BE9M35OFD |
Estimation, Filtering and Detection |
2P+2C |
EN |
Z,ZK |
Z |
4 |
Havlena V. |
|
B3M35OFD |
Estimation, filtering and detection |
2P+2C |
CS |
Z,ZK |
Z |
6 |
Havlena V. |
|
B9M35OFD |
Estimation, Filtering and Detection |
2P+2C |
CS |
Z,ZK |
Z |
4 |
Havlena V. |
|
AE8B35FCS |
Feed-Back Control Systems |
4P+2L |
EN |
Z,ZK |
L |
6 |
|
|
A8B35FCS |
Feed-Back Control Systems |
4P+2L |
CS |
Z,ZK |
L |
6 |
|
|
XP35FSC1 |
Flexible structures control |
2P+2C |
CS |
ZK |
|
4 |
Hromčík M. |
|
AD3M35SRL |
Flight Control Systems |
14KP+6KC |
CS |
Z,ZK |
Z |
6 |
|
|
AE3M35SRL |
Flight Control Systems |
2P+2L |
EN |
Z,ZK |
Z |
6 |
|
|
A3M35SRL |
Flight Control Systems |
2P+2L |
CS |
Z,ZK |
Z |
6 |
|
|
BE3M35SRL |
Flight Control Systems |
2P+2L |
EN |
Z,ZK |
Z |
6 |
Hromčík M. |
|
BE9M35SRL |
Flight Control Systems |
2P+2L |
EN |
Z,ZK |
Z |
6 |
Hromčík M. |
|
B3M35SRL |
Flight Control Systems |
2P+2L |
CS |
Z,ZK |
Z |
6 |
Hromčík M. |
|
B9M35SRL |
Flight Control Systems |
2P+2L |
CS |
Z,ZK |
Z |
6 |
Hromčík M. |
|
B3B35JVC |
How to make (almost) anything |
2P+4L |
CS |
KZ |
L |
6 |
Zemánek J. |
|
B3B35HSS |
Humanitní, umělecký a společenskovědní seminář |
3S |
CS |
Z |
L |
4 |
Šebek M. |
|
BE3M35HYS |
Hybrid Systems |
2P+2C |
EN |
Z,ZK |
|
6 |
Hurák Z. |
|
B3M35HYS |
Hybrid Systems |
2P+2C |
CS |
Z,ZK |
|
6 |
Hurák Z. |
|
RM35HYS |
Hybrid Systems |
2P+2C |
CS |
Z,ZK |
|
6 |
Hurák Z. |
|
AE3B35IND |
Individual Project |
3S |
EN |
KZ |
Z |
7 |
|
|
BE3M35IDP |
Individuální projekt |
0P+6S |
EN |
Z |
Z |
8 |
|
|
AD0M35PII |
Industrial Informatics and Internet |
14KP+6KC |
CS |
Z,ZK |
Z |
6 |
|
|
AD3M35PII |
Industrial Informatics and Internet |
14KP+6KC |
CS |
Z,ZK |
Z |
6 |
|
|
AD4M35PII |
Industrial Informatics and Internet |
14KP+6KC |
CS |
Z,ZK |
Z |
6 |
|
|
AE0M35PII |
Industrial Informatics and Internet |
2P+2C |
EN |
Z,ZK |
Z |
6 |
|
|
AE3M35PII |
Industrial Informatics and Internet |
2P+2C |
EN |
Z,ZK |
Z |
6 |
|
|
AE4M35PII |
Industrial Informatics and Internet |
2P+2C |
EN |
Z,ZK |
Z |
6 |
|
|
A0M35PII |
Industrial Informatics and Internet |
2P+2C |
CS |
Z,ZK |
Z |
6 |
|
|
BE3M35ISME |
Introduction to Space Mechanics and Electronics |
0P+4S |
EN |
Z |
Z |
8 |
|
|
BE3M35ISP |
Introduction to Space Physics |
2P+2S |
EN |
Z,ZK |
Z |
8 |
|
|
B3B35LAR |
Laboratory of applied electronics and control |
0P+4L |
CS |
KZ |
L |
4 |
Hlinovský M. |
|
XP35LMI1 |
Linear matrix inequalities |
2P+2C |
EN |
ZK |
|
4 |
Henrion D. |
|
BE3M35LSY1 |
Linear Systems |
3P+2S |
EN |
Z,ZK |
Z |
6 |
Hušek P. |
|
B3M35LSY1 |
Linear Systems |
4P+2C |
CS |
Z,ZK |
Z |
6 |
Hušek P. |
|
BE5B35LSP |
Logic Systems and Processors |
3P+2L |
EN |
Z,ZK |
Z |
6 |
Šusta R. |
|
B0B35LSP |
Logic systems and processors |
2P+2L |
CS |
Z,ZK |
L |
6 |
Hurák Z. |
|
BE3M35MESA |
Microcomputer Engineering with Space Applications |
2P+2S |
EN |
Z,ZK |
Z |
7 |
|
|
AD3B35MSD |
Modeling and simulation of dynamic systems |
14KP+6KC |
CS |
Z,ZK |
Z |
6 |
|
|
AE3B35MSD |
Modeling and Simulation of Dynamic Systems |
2P+2L |
EN |
Z,ZK |
Z |
6 |
|
|
A3B35MSD |
Modeling and simulation of dynamic systems |
2P+2L |
CS |
Z,ZK |
Z |
6 |
|
|
B3B35MSD1 |
Modeling and simulation of dynamic systems |
2P+2C |
CS |
Z,ZK |
Z |
6 |
Hurák Z. |
|
B3B35MSD |
Modeling and Simulation of Dynamic Systems |
2P+2L |
CS |
Z,ZK |
Z |
4 |
|
|
AD7B35MAS |
Modeling and simulation |
14KP+6KC |
CS |
Z,ZK |
Z |
6 |
|
|
A5M35MAS |
Modeling and simulation |
2P+2C |
CS |
KZ |
Z |
4 |
|
|
AD3M35NES |
Nonlinear Systems and Chaos |
21KP+3KC |
CS |
Z,ZK |
Z |
6 |
|
|
AE3M35NES |
Nonlinear Systems and Chaos |
3P+1C |
EN |
Z,ZK |
Z |
6 |
|
|
B3M35NES |
Nonlinear Systems and Chaos |
2P+2C |
CS |
Z,ZK |
Z |
6 |
Čelikovský S. |
|
BE3M35NES |
Nonlinear Systems |
2P+2C |
EN |
Z,ZK |
Z |
6 |
Čelikovský S. |
|
AD4M35OSP |
Open-source programming |
14KP+6KC |
CS |
Z,ZK |
L |
6 |
|
|
AE4M35OSP |
Open-source programming |
2P+2C |
EN |
Z,ZK |
L |
6 |
|
|
A4M35OSP |
Open-source programming |
2P+2C |
CS |
Z,ZK |
L |
6 |
|
|
RM35OSP |
Open-source programming |
2P+2C |
CS |
Z,ZK |
L |
6 |
|
|
B4B35OSY |
Operating Systems |
2P+2C |
CS |
Z,ZK |
Z |
4 |
Sojka M. |
|
BE3M35ORO |
Optic- and Radar-based Observations |
2P+2S |
EN |
Z,ZK |
L |
8 |
|
|
BE3M35ORC |
Optimal and robust control design |
2P+2C |
EN |
Z,ZK |
L |
8 |
|
|
AD3M35ORR |
Optimal and robust control |
21KP+3KC |
CS |
Z,ZK |
L |
6 |
|
|
AE3M35ORR |
Optimal and robust control |
3P+1C |
EN |
Z,ZK |
L |
6 |
|
|
BE3M35ORR |
Optimal and Robust Control |
2P+2C |
EN |
Z,ZK |
L |
6 |
Hurák Z. |
|
B3M35ORR |
Optimal and Robust Control |
2P+2C |
CS |
Z,ZK |
L |
6 |
Hurák Z. |
|
RM35ORR |
Optimal and robust control |
2P+2C |
CS |
Z,ZK |
L |
6 |
Hurák Z. |
|
XP35ORC1 |
Optimal and robust control |
2P+2C |
CS |
ZK |
|
4 |
Hurák Z. |
|
AD7B35OIS |
Optimization in Intelligent Systems |
14KP+6KC |
CS |
Z,ZK |
L |
6 |
|
|
BE4M35PAG |
Parallel algorithms |
2P+2S |
EN |
Z,ZK |
Z |
6 |
Šůcha P. |
|
B4M35PAG |
Parallel algorithms |
2P+2S |
CS |
Z,ZK |
Z |
6 |
Šůcha P. |
|
BE3M35PAT |
Polar Atmosphere |
2P+2S |
EN |
Z,ZK |
L |
8 |
|
|
AD7B35PES |
Programming Embedded Systems |
14KP+6KC |
CS |
Z,ZK |
Z |
6 |
|
|
B3B35PAR1 |
Programming of logic controllers and robots |
1P+3L |
CS |
Z,ZK |
L |
6 |
Burget P. |
|
B3B35PAR |
Programming of logic controllers and robots |
2P+2L |
CS |
Z,ZK |
L |
4 |
|
|
AD3B35IND |
Project Individual |
9S |
CS |
KZ |
Z |
7 |
|
|
AD3M35IND |
Project Individual |
9S |
CS |
KZ |
Z |
10 |
|
|
AE3M35IND |
Project Individual |
3S |
EN |
KZ |
Z |
10 |
|
|
A3B35IND |
Project Individual |
3S |
CS |
KZ |
Z |
7 |
|
|
A3M35IND |
Project Individual |
3S |
CS |
KZ |
Z |
10 |
|
|
RB35IND |
Project individual |
3S |
CS |
KZ |
Z |
7 |
|
|
RM35IND |
Project individual |
3S |
CS |
KZ |
Z |
10 |
|
|
BE3M35PSA |
Propulsion with Space Applications |
2P+2S |
EN |
Z,ZK |
L |
7 |
|
|
B3M35PSR |
Real -Time Systems Programming |
2P+2C |
CS |
Z,ZK |
Z |
6 |
Sojka M. |
|
AD3M35PSR |
Real-Time Systems Programming |
14KP+6KC |
CS |
Z,ZK |
Z |
6 |
|
|
AD4B35PSR |
Real-Time Systems Programming |
14KP+6KC |
CS |
Z,ZK |
Z |
6 |
|
|
AE3M35PSR |
Real-Time Systems Programming |
2P+2C |
EN |
Z,ZK |
Z |
6 |
|
|
AE4B35PSR |
Real-Time Systems Programming |
2P+2C |
EN |
Z,ZK |
Z |
6 |
|
|
A3M35PSR |
Real-Time Systems Programming |
2P+2C |
CS |
Z,ZK |
Z |
6 |
|
|
A4B35PSR |
Real-Time Systems Programming |
2P+2C |
CS |
Z,ZK |
Z |
6 |
|
|
BE3M35PSR |
Real-time Systems Programming |
2P+2C |
EN |
Z,ZK |
Z |
6 |
|
|
BE4B35PSR |
Real-time Systems Programming |
2P+2C |
EN |
Z,ZK |
Z |
6 |
Sojka M. |
|
B4B35PSR |
Real-time Systems Programming |
2P+2C |
CS |
Z,ZK |
Z |
6 |
Sojka M. |
|
AD3B99RO |
Robots |
7KP+9KC |
CS |
KZ |
Z |
5 |
|
|
AE3B99RO |
Robots |
1P+3L |
EN |
KZ |
Z |
5 |
|
|
B3B35RO1 |
Robots |
1P+3L |
CS |
KZ |
Z |
4 |
Hlinovský M. |
|
B3B35RO |
Robots |
1P+2L |
CS |
KZ |
Z |
2 |
|
|
AD7B35PRO |
Semestral project |
15S |
CS |
KZ |
Z |
6 |
|
|
BD6B35PRO |
Semestral Project |
2S |
CS |
KZ |
Z |
6 |
|
|
B6B35PRO |
Semestral Project |
5S |
CS |
KZ |
Z |
6 |
|
|
A4B35SVP |
Software or Research Project |
3S |
CS |
KZ |
Z,L |
6 |
|
|
A4M35SVP |
Software or Research Project |
3S |
CS |
KZ |
Z,L |
6 |
|
|
BE3M35SPC |
Space Communication |
2P+2S |
EN |
Z,ZK |
L |
8 |
|
|
BE3M35SDY |
Space Dynamics |
2P+2S |
EN |
Z,ZK |
Z |
5 |
|
|
BE3M35SPI |
Space Instruments |
2P+2S |
EN |
Z,ZK |
Z |
8 |
|
|
BE3M35SPP |
Space Plasma Physics |
2P+2S |
EN |
Z,ZK |
Z |
7 |
|
|
BE3M35SSM |
Space systems, modeling and identification |
4P+2C |
EN |
Z,ZK |
Z |
7 |
|
|
BE3M35SEI |
Spacecraft Environment Interactions |
2P+2S |
EN |
Z,ZK |
L |
7 |
|
|
BE3M35SPS |
Spacecraft Subsystems |
2P+2S |
EN |
Z,ZK |
L |
7 |
|
|
BE3M35SSD |
Spacecraft System Design |
2P+2S |
EN |
Z,ZK |
Z |
8 |
|
|
BE3M35SIS |
Swedish for International Students 1 |
2P+2S |
CS |
Z,ZK |
Z |
3 |
|
|
BE3M35TSS |
The Solar System |
2P+2S |
EN |
Z,ZK |
Z |
7 |
|
|
AD3M35TDS |
Theory of Dynamical Systems |
28KP+6KC |
CS |
Z,ZK |
Z |
8 |
|
|
AE3M35TDS |
Theory of Dynamical Systems |
4P+2C |
EN |
Z,ZK |
Z |
8 |
|
|
XP35DTF |
Thin film diagnostics |
2P+2L |
EN |
Z,ZK |
L |
4 |
Polcar T. |
|