Bahçeşehir UniversityDegree Programs BIOENGINEERING (ENGLISH, THESIS)General Information For StudentsDiploma SupplementErasmus Policy StatementBologna CommissionNational Qualifications
BIOENGINEERING (ENGLISH, THESIS)
Master TR-NQF-HE: Level 7 QF-EHEA: Second Cycle EQF-LLL: Level 7

Program Outcomes

Classified

1 - Knowledge
Theoretical - Conceptual
2 - Skills
Cognitive - Practical
3 - Competences
Communication and Social Competence
Learning Competence
Field Specific Competence
Competence to Work Independently and Take Responsibility

Program Gains Program Level

Program Outcomes TR-NQF-HE 7 (Master) Level Descriptors TR-NQF-HE Main Field Descriptors
52 - Engineering and Engineering Trades
1 - Knowledge
Theoretical - Conceptual
1) Develop and deepen knowledge in the same or in a different field to the proficiency level based on Bachelor level qualifications.
2) Conceive the interdisciplinary interaction which the field is related with.
2 - Skills
Cognitive - Practical
1) Conceive the interdisciplinary interaction which the field is related with.
2) Interpret the knowledge about the field by integrating the information gathered from different disciplines and formulate new knowledge.
3) Solve the problem faced related to the field by using research methods.
3 - Competences
Communication and Social Competence
1) Communicate current developments and studies within the field to both professional and non-professional groups systematically using written, oral and visual techniques by supporting with quantitative and qualitative data.
2) Investigate, improve social connections and their conducting norms with a critical view and act to change them when necessary
3) Communicate with peers by using a foreign language at least at a level of European Language Portfolio B2 General Level.
4) Use advanced informatics and communication technology skills with software knowledge required by the field.
Learning Competence
1) Evaluate knowledge and skills acquired at proficiency level in the field with a critical approach and direct the learning.
Field Specific Competence
1) Audit the data gathering, interpretation, implementation and announcement stages by taking into consideration the cultural, scientific, and ethic values and teach these values.
2) Develop strategy, policy and implementation plans on the issues related to the field and assess the findings within the frame of quality processes.
3) Use the knowledge, problem solving and/or implementation skills in interdisciplinary studies.
Competence to Work Independently and Take Responsibility
1) Independently conduct studies that require proficiency in the field.
2) Take responsibility and develop new strategic solutions as a team member in order to solve unexpected complex problems faced within the applications in the field.
3) Demonstrate leadership in contexts that require solving problems related to the field.

Conjoined

1) An understanding of the advanced concepts of Mathematics (calculus, analysis, linear algebra, differential equations, statistics), Natural Sciences (physics, chemistry, biology), and Engineering Sciences (electronics, material science, mechanics, thermal and fluid systems, control, signal and image processing, microcontrollers) relevant to Biomedical Engineering.
2) An ability to use at an advanced level the techniques, skills, and modern engineering tools (including software) necessary for engineering practice.
3) The capability of designing and conducting advanced experiments and of analyzing and evaluating data.
4) An ability to design the components of complex systems and processes under realistic constraints.
5) Acquisition of the skills needed to develop products (device, system, process) which are used in diagnosis, prevention, treatment and cure of diseases.
6) An ability to communicate knowledge and opinion efectively, both oral and in writing.
7) An ability to assume initiative and individual resposibility, and to cooperate with team-mates from other disciplines.
8) A kowledge of the current needs and problems of society, and an awareness of the social and global impact of engineering solutions.
9) Assimilation of the ethics and responsibilities of the profession.
10) Recognition of the importance of life-long learning, and participation therein.