专业介绍
Graduates studying in this field study applied mathematics and programming. In the end, he will graduate as a researcher-pedagogue.
|
Credit |
Total hours |
Auditorium hour |
Course work |
Qualifying practice |
Independent education |
||||
|
Total |
Lecture |
Practical |
Laboratory |
Seminar |
|||||
|
120 |
3600 |
900 |
404 |
406 |
0 |
0 |
2 |
78 |
900 |
At the 1st stage, Scientific Research Methodology, Computer Technologies in Mathematical Modeling, Differential Circuit Theory, Modern Mathematical Problems of Natural Science, Supercomputer Modeling and Technologies, Network Technologies and Administration, GNU/LINUX Software Interface, Software Engineering, Computing Methods for Incorrect and Inverse Problems, Interactive Science computer science is taught in English.
Qualification practices are held at the end of the 2nd stage in base organizations and enterprises.
In the 2nd stage, the teaching methodology of special subjects, finite element method, methods of solving grid equations, Python libraries, intellectual analysis of data are conducted in Uzbek or English. Specialized subjects are taught entirely in English.
After successful completion of 2-year study, researcher-pedagogue specialty is awarded.
Education is conducted in the credit-module system. 1 credit is 30 academic hours.
Transfer from course to course is determined by the GPA index at the end of each academic year.
At the end of the educational program, Final State Certification tests are held.
Practical classes of programming subjects included in the curriculum are held in small groups depending on the number of masters.
|
Components of the educational process |
Number of weeks |
Semester |
|
Theoretical and practical education |
45 |
1-3 |
|
Attestations |
12 |
1-4 |
|
Register to choose subjects |
3 |
1,2,3 |
|
Practice |
16 |
4 |
|
Final state certifications |
4 |
4 |
|
Vacation weeks |
18 |
1-4 |
|
Calculation of GPA |
2 |
2,4 |
|
Total |
100 |
|
|
№ |
Qualification code of science |
Names of academic subjects, blocks and activities |
Total load size |
Allocated credit |
|||
|
1st course |
|||||||
|
Compulsory subjects |
|||||||
|
1. |
ITM1102 |
Methodology of scientific research |
60 |
2 |
|||
|
2. |
MMKT1210 |
Computer technologies in mathematical modeling |
300 |
10 |
|||
|
3. |
ASN1208 |
Theory of differential circuits |
240 |
8 |
|||
|
4. |
TZMM1110 |
Modern mathematical problems of natural science |
300 |
10 |
|||
|
Elective subjects |
|||||||
|
5. |
SMvaT2204 |
Supercomputer modeling and technologies |
120 |
4 |
|||
|
6. |
TTvaA2204 |
Network technologies and administration |
|
|
|||
|
7. |
GLDI2204 |
GNU/LINUX software interface |
120 |
4 |
|||
|
8. |
DasI2204 |
Software engineering |
|
|
|||
|
9. |
NTMHU2204 |
Calculation methods for incorrect and inverse problems |
120 |
4 |
|||
|
10. |
IIHT2204 |
Interactive scientific computing systems |
|
|
|||
|
Scientific activity |
|||||||
|
11. |
|
Preparation of research work and master's thesis |
300 |
10 |
|||
|
12. |
|
Scientific and pedagogical work |
240 |
8 |
|||
|
2st course |
|||||||
|
Compulsory subjects |
|||||||
|
1. |
MFO’M1310 |
Methodology of teaching special subjects |
300 |
10 |
|||
|
Elective subjects |
|||||||
|
2. |
ChEU2304 |
Finite element method |
120 |
4 |
|||
|
3. |
TTYU2304 |
Methods of solving grid equations |
|||||
|
4. |
PytK2304 |
Python libraries |
120 |
4 |
|||
|
5. |
BIT2304 |
Intellectual analysis of givens |
|||||
|
Scientific activity |
|||||||
|
6. |
|
Preparation of research work and master's thesis |
780 |
26 |
|||
|
7. |
|
Scientific and pedagogical work |
300 |
10 |
|||
|
8. |
|
Scientific practice (internship) |
180 |
6 |
|||
Vacation time:
5. 1st course:
- from the 5th week of December to the 1st week of January (25.12.2023-07.01.2024 for 2024)
- from the 3nd week of June to September (17.06.2024-02.09.2024 for 2024)
6. 2nd course:
- from the 5th week of December to the 1st week of January (22.12.2024-05.01.2025 for 2025)
- from the 1st week of July to September (07/01/2025-09/02/2025 for 2025)
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