Programme overview
Degree
MEng
Study Level
Masters
Study Mode
On Campus
The Materials Engineering master’s programme prepares specialists with advanced theoretical knowledge and research competencies in the field of material structure, properties, production, and application. As one of the priority areas of modern science and technology, materials engineering plays a key role in the development of innovative engineering solutions across various industrial sectors.
The programme explores the atomic, crystalline, and molecular structures of materials, including crystal lattice types, structural defects, phase diagrams, and compatibility diagrams. Particular attention is given to understanding how micro- and nano-scale structural changes influence the physical, mechanical, and chemical properties of materials.
Students analyse properties such as strength, durability, corrosion resistance, and resistance to external environmental factors, while also studying the optimization of thermal and chemical treatment processes to improve material performance and technological efficiency.
The programme includes training in advanced research methodologies, including microscopy, X-ray diffraction, thermogravimetric analysis, spectroscopy, and other instrumental analytical techniques. Students develop analytical skills for interpreting experimental results and modelling material behaviour.
The curriculum also addresses the design and development of new materials, evaluation of their economic feasibility, and optimization of production technologies. Students learn to select materials for different functional applications by considering structural characteristics, operating conditions, environmental factors, and economic efficiency.
The programme fosters independent research skills, analytical thinking, and the ability to propose innovative technological solutions to complex engineering problems while maintaining high standards of professional ethics and scientific responsibility.
Programme overview
Degree
MEng
Study Level
Masters
Study Mode
On Campus
The Materials Engineering master’s programme prepares specialists with advanced theoretical knowledge and research competencies in the field of material structure, properties, production, and application. As one of the priority areas of modern science and technology, materials engineering plays a key role in the development of innovative engineering solutions across various industrial sectors.
The programme explores the atomic, crystalline, and molecular structures of materials, including crystal lattice types, structural defects, phase diagrams, and compatibility diagrams. Particular attention is given to understanding how micro- and nano-scale structural changes influence the physical, mechanical, and chemical properties of materials.
Students analyse properties such as strength, durability, corrosion resistance, and resistance to external environmental factors, while also studying the optimization of thermal and chemical treatment processes to improve material performance and technological efficiency.
The programme includes training in advanced research methodologies, including microscopy, X-ray diffraction, thermogravimetric analysis, spectroscopy, and other instrumental analytical techniques. Students develop analytical skills for interpreting experimental results and modelling material behaviour.
The curriculum also addresses the design and development of new materials, evaluation of their economic feasibility, and optimization of production technologies. Students learn to select materials for different functional applications by considering structural characteristics, operating conditions, environmental factors, and economic efficiency.
The programme fosters independent research skills, analytical thinking, and the ability to propose innovative technological solutions to complex engineering problems while maintaining high standards of professional ethics and scientific responsibility.
Tuition fees
Domestic
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