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Bioengineering
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Summary of the Profile
General Description:
Objective(s) of a study programme:
The aim of the Bioengineering study program is to train a Master of Bioengineering with basic knowledge of gene engineering, proteins function, biochemistry, biological systems simulation and bioinformatics analysis, able individually to carry out scientific research, analyze the obtained results and continue studies in doctoral programs.
Learning outcomes:
- Students understand the principles of biotechnology object studies. Know and assess the advanced biotechnology achievements;
-Students are able to formulate and solve the problems, arising in the newly evolving fields of biotechnology;
-Students are able to use the acquired knowledge and understanding to conceptualize the models, systems, and processes, and to use different methods including the mathematical analysis, numerical simulation, or the experiments;
-Students are able to use the acquired knowledge and understanding in biotechnology to solve the non-typical problems, among them also the ones connected to the other fields of science and technology;
-Students are able to develop new original ideas and methods;
-Students are able to identify, find, and acquire the data needed ;
-Students are able to plan and perform the analytical, modelling, and experimental research;
-Students are able to critically analyse the data and to give the conclusions;
-Students understand what kind of methods and protocols of the biotechnology they may apply and are aware of their limits;
-Students understand ethical, environmental, and commercial requirements of the technological and engineering activities;
-Students understand the influence of the technological and engineering decisions for the society and environment, also keep the norms of the professional ethics and technological and engineering activities,
Activities of teaching and learning:
Extended subjects for Masters of Bioengineering: Biochemical Engineering, Industrial Biotechnology, Systems Biology, Stem Cell Biology and Technology, Gene Engineering, Proteomics, Mathematical Modeling of Biological Systems, Methods of Isolation and Purification of Proteins, Cell Biology Organization of Scientific Work and other.
Methods of assessment of learning achievements:
Written examination, report of laboratory work, middle tests, Intermediate examination.
Access to professional activity or further study:
Access to professional activity:
The Master's Degree Program is designed to prepare bioengineering specialists who are able to carry out research and work in the fields of biotechnology, bioengineering, biochemistry, gene engineering, cell biology, tissue culture.
Access to further study:
Upon completion of the Master's program in bioengineering, studies can be continued in doctoral programs in physical, biomedical, and related technology fields.