About the programme
FACULTY OF METALLURGY AND CHEMICAL TECHNOLOGY
60710100-Chemical technology (inorganic substances)
Students studying in this area study technological processes in manufacturing plants, the operating principles of the equipment used in these processes, and the reactions that occur during this process.
|
Credit |
Total hours |
Audience Hour |
Coursework |
Qualified Internship |
Self-study |
||||
|
General |
Lecture |
practical |
Laboratory |
seminar |
|||||
|
240 |
7200 |
3020 |
1258 |
1192 |
480 |
90 |
3 pcs. |
450 |
3580 |
At the 1st stage, all subjects provided by the curriculum are taught in Uzbek and Russian. Introductory practices are conducted at manufacturing enterprises.
From the 2nd stage, all subjects of the curriculum will be taught in Uzbek and Russian. Internships are conducted at manufacturing enterprises.
At the 3rd stage, all subjects of the curriculum are taught in Uzbek and Russian. Industrial practice is carried out at manufacturing enterprises.
At the 4th stage, all subjects of the curriculum are taught in Uzbek and Russian. Pre-graduation practice is conducted at manufacturing enterprises.
After successful completion of 4 years of study, the specialty of chemical engineer-technologist is awarded.
1 credit equals 30 academic hours.
The contract fee for international students is set at US$1,000.
The average score is determined annually in the third week of August.
The block of elective disciplines is determined by the decision of the Council of the higher educational institution from a set of disciplines that meet the requirements of the labor market and personnel customers, adaptability and mobility.
When forming a working curriculum based on the curriculum, it is possible to change the volume of a subject block by up to 5%, the volume of subjects within blocks by up to 10% while maintaining the weekly volume of the student’s academic workload, as well as freely determine the volume of the weekly workload in individual semesters while maintaining the total volume of classroom workload.
The final state certification period also includes the defense of the final qualifying work.
Practical classes and laboratory work on specialization disciplines included in the curriculum are conducted in higher education institutions and at industrial enterprises.
To ensure the integrity of theory and practice, student internships are conducted in higher education institutions and industrial enterprises.
Physical education and sports science are organized as optional subjects in sports sections at the voluntary choice of students.
The coursework is completed on a credit basis using the hours of independent study allocated for this subject.
|
Components of the learning process |
Number of weeks |
Semester |
|
Theoretical and practical training |
116 |
1-8 |
|
Certificates |
16 |
1-8 |
|
Register to select items |
8 |
1-8 |
|
Exercise |
15 |
2,4,6,8 |
|
The final state certifications |
5 |
8 |
|
Vacation weeks |
44 |
1-8 |
|
Average score indicator calculation |
3 |
2,4,6 |
|
General |
20 7 |
|
VACATION TIME:
- 1st year:
- 5th week of December - 1st week of January (25.12.2023-07.01.2024 for 2024)
- from the 1st week of June to September (03.06.2024-02.09.2024 for 2024)
- 2nd year:
-5th week of December - 1st week of January (25.12.2023-07.01.2024 for 2024)
- from the 4th week of June to September (06/24/2024-09/02/2024 for 2024)
- 3rd year:
- 5th week of December - 1st week of January (25.12.2023-07.01.2024 for 2024)
- from the 4th week of July to September (22.07.2024-02.09.2024 for 2024)
- 4th year:
- 5th week of December - 1st week of January (25.12.2023-07.01.2024 for 2024)
- 4th week of April - 2nd week of May (22.04.2024-11.05.2024 for 2024)
SCIENCES
- Analytical Chemistry
- Physical Chemistry
- Colloid chemistry
- General chemical technology
- Energy technologies
- Entrance to the route
- Corporate equipment
- Physicochemical methods of analysis
- Main technological processes and devices
- Machines and equipment for the chemical industry
- Modeling of production processes
- Chemical technology of inorganic substances
- Equipment and structures for the production of inorganic substances
- Technology of mineral fertilizers
- Binder technology
- Fundamentals of biotechnological processing of mineral raw materials
- Instrumental methods of analysis
- Technology of organic synthesis
- Fundamentals of Biochemistry and Biotechnology
- Soda ash technology
FACULTY OF METALLURGY AND CHEMICAL TECHNOLOGY
60710100-Chemical technology (inorganic substances)
Students studying in this area study technological processes in manufacturing plants, the operating principles of the equipment used in these processes, and the reactions that occur during this process.
Credit Total hours Audience Hour Coursework Qualified Internship Self-study
General Lecture practical Laboratory seminar
240 7200 3020 1258 1192 480 90 3 pcs. 450 3580
At the 1st stage, all subjects provided by the curriculum are taught in Uzbek and Russian. Introductory practices are conducted at manufacturing enterprises.
From the 2nd stage, all subjects of the curriculum will be taught in Uzbek and Russian. Internships are conducted at manufacturing enterprises.
At the 3rd stage, all subjects of the curriculum are taught in Uzbek and Russian. Industrial practice is carried out at manufacturing enterprises.
At the 4th stage, all subjects of the curriculum are taught in Uzbek and Russian. Pre-graduation practice is conducted at manufacturing enterprises.
After successful completion of 4 years of study, the specialty of chemical engineer-technologist is awarded.
1 credit equals 30 academic hours.
The contract fee for international students is set at US$1,000.
The average score is determined annually in the third week of August.
The block of elective disciplines is determined by the decision of the Council of the higher educational institution from a set of disciplines that meet the requirements of the labor market and personnel customers, adaptability and mobility.
When forming a working curriculum based on the curriculum, it is possible to change the volume of a subject block by up to 5%, the volume of subjects within blocks by up to 10% while maintaining the weekly volume of the student’s academic workload, as well as freely determine the volume of the weekly workload in individual semesters while maintaining the total volume of classroom workload.
The final state certification period also includes the defense of the final qualifying work.
Practical classes and laboratory work on specialization disciplines included in the curriculum are conducted in higher education institutions and at industrial enterprises.
To ensure the integrity of theory and practice, student internships are conducted in higher education institutions and industrial enterprises.
Physical education and sports science are organized as optional subjects in sports sections at the voluntary choice of students.
The coursework is completed on a credit basis using the hours of independent study allocated for this subject.
Components of the learning process Number of weeks Semester
Theoretical and practical training 116 1-8
Certificates 16 1-8
Register to select items 8 1-8
Exercise 15 2,4,6,8
The final state certifications 5 8
Vacation weeks 44 1-8
Average score indicator calculation 3 2,4,6
General 20 7
VACATION TIME:
1. 1st year:
- 5th week of December - 1st week of January (25.12.2023-07.01.2024 for 2024)
- from the 1st week of June to September (03.06.2024-02.09.2024 for 2024)
2. 2nd year:
-5th week of December - 1st week of January (25.12.2023-07.01.2024 for 2024)
- from the 4th week of June to September (06/24/2024-09/02/2024 for 2024)
3. 3rd year:
- 5th week of December - 1st week of January (25.12.2023-07.01.2024 for 2024)
- from the 4th week of July to September (22.07.2024-02.09.2024 for 2024)
4. 4th year:
- 5th week of December - 1st week of January (25.12.2023-07.01.2024 for 2024)
- 4th week of April - 2nd week of May (22.04.2024-11.05.2024 for 2024)
SCIENCES
1. Analytical Chemistry
2. Physical Chemistry
3. Colloid chemistry
4. General chemical technology
5. Energy technologies
6. Entrance to the route
7. Corporate equipment
8. Physicochemical methods of analysis
9. Main technological processes and devices
10. Machines and equipment for the chemical industry
11. Modeling of production processes
12. Chemical technology of inorganic substances
13. Equipment and structures for the production of inorganic substances
14. Technology of mineral fertilizers
15. Binder technology
16. Fundamentals of biotechnological processing of mineral raw materials
17. Instrumental methods of analysis
18. Technology of organic synthesis
19. Fundamentals of Biochemistry and Biotechnology
20. Soda ash technology
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