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Accreditation:

According to the results of the audit of the non-commercial external expert commission “Independent Accreditation Agency and Rating”, held in October 2015, it successfully passed a specialized accreditation for 5 years (No. АB0524, 04.22.2015-22.04.2020).

Duration of education:

2 years

The awarded degree:

Master of educational program «7M05301 – Physics»

Sphere of professional activity:

the field of experimental, theoretical and applied physics, as well as the field of related natural and technical sciences; the field of education, including the field of pedagogy, theories and methods of teaching physics in higher educational institutions.

Objects of professional activity:

research institutes, research centers, research laboratories, design and design offices, firms and companies; higher educational institutions, state educational institutions and educational enterprises, as well as non-governmental educational organizations; bodies of public administration of the appropriate profile.

The subject of professional activity:

research, production and technological processes in institutions, enterprises and associations; organizational and managerial processes in state institutions, firms and companies, including international ones; educational processes in higher and secondary special educational institutions.

Types of professional activity:

research; pedagogical.

Bases of practice and internships:

Vytautas Magnus University, Lithuania; Gdansk University, Poland; Bashkir state. University, Russia; University of Sakarya, Turkey; Saratov State Technical University. Y. Gagarin, Russia; Grodno State University name of Y. Kupala, Belarus.


Educational Program Description 7M05301 Ma– Physics 

The master's degree program 7M05301 Ma– Physics is designed to train research-oriented specialists with in-depth knowledge of theoretical and applied physics, capable of conducting independent scientific research and working in high-tech industries or academic institutions. The program develops competencies in theoretical analysis, numerical modeling, and experimental methods.

The program develops the following competencies:

  • Mastery of modern physical theories and models
  • Proficiency in mathematical modeling and numerical simulations
  • Skills in organizing and conducting experiments
  • Scientific data analysis and interpretation
  • Academic writing and preparation of scientific publications

Core courses:

  • Molecular Physics and Thermodynamics
  • Quantum Mechanics
  • Statistical Physics
  • Modeling of Physical Processes
  • Experimental Methods in Physics
  • Research Methodology

Possible career paths:

  • Research scientist
  • Laboratory engineer
  • University lecturer
  • Specialist in simulation and modeling
  • Analyst in physics-related technologies

Graduates of the program acquire the knowledge and skills necessary for successful employment at all levels of the education system, in research institutions, as well as in teaching, research, and management. The program offers broad career opportunities in universities, laboratories, research centers, and sectors that demand strong analytical thinking and expertise in natural sciences.