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Nuclear Engineering

Level: Master's Degree

Direction: 14.04.02 Nuclear Physics and Technologies

Language of instruction: English

Credit value: 120 ECTS credits

Duration and mode of study: 2 years, full-time

Program curator: Prof. Georgy Tihomirov

Program manager: Prof. Georgy Tihomirov

Contacts: This email address is being protected from spambots. You need JavaScript enabled to view it.

Description:

The Master Program “Nuclear Engineering” is oriented on the preparing graduates who will be able to work successfully in the areas related to design, analysis and assessment of safety and economical efficiency of contemporary and advanced nuclear power facilities. Besides, the Program graduates have to possess a sufficiently wide spectrum of systematical and analytical skills, leadership and communicative competencies in order to work successfully within a team of professionals.

The Program graduates have to acquire a profound knowledge and practical methodologies and tools in neutron-physical and thermal-hydraulic processes that occur in the reactor core under nominal, accidental and transient operating conditions.

Career opportunities:

Attractive features of the Program include a profound training in physics, mathematics, information technologies, and competencies in critical high-tech nuclear technologies that provide great career opportunities for a good job.

 

Curriculum:

Term

Course

Credit value

1

Compulsory courses:

 

Special chapters of higher mathematics

3

Foreign Language

2

Nuclear Physics

3

Nuclear Reactor Physics

3

Neutron Transport Theory

4

Quantites and data in nuclear technologies

3

Monitoring and control of the technological parameters of NPP

4

Thermohydraulic design on nuclear devices

2

Introductory Practice

3

Electives:

 

Nuclear Knowledge Management

2
2

Compulsory courses:

 

Foreign Language

2

Thermohydraulic design on nuclear devices

2

Nuclear Reactor Physics

3

Operating Safety and Control on NPP. Digital Safety Systems of Nuclear Reactors

3

Machines and Equipment of Nuclear Power Plants

2

Computational Modelling in Nuclear Reactor Physics

4

Dynamics and reactor safety

3

Instrumentation and experimental methods in reactor physics

2

Reactor Materials Science

4

Student's Research work

2

Industrial Practice

3

Electives:

 

Nuclear Fuel Cycle

2
3

Compulsory courses:

 

Foreign Language

2

Basics of CAD for nuclear industry

3

New sources of energy

2

Reliability of Nuclear Power Plants

4

Radiation protection of Nuclear facilities

3

Reactor Physics Safety and Control

4

Student's Research work

3

Electives:

 

Selected Parts of Legislation

3

Nonproliferation of Nuclear Materials

3
4

Final Qualifying Work

6

Pre-diploma Practice

18

Electives:

 

Technical English

3

Training course for the Master Thesis

5

Partners

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