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Study programmes > All studies > Biomedical engineering > Biomedical Engineering, full time studies, first degree studies

Biomedical Engineering, full time studies, first degree studies (INBDZN)

(in Polish: Inżynieria Biomedyczna, stacjonarne, pierwszego stopnia)
First degree studies
full time studies, 3,5 years, 210 ECTS points, including 4-week work experience internship (4ECTS)
Language: Polish
No description for the programme.

Qualification awarded:

(in Polish) inżynier

Access to further studies:

possibility of appllying for second degree studies, postgraduate studies

Professional status:

right to apply for qualifications related with the field of studies completed

Access requirements

possess maturity certificate, positive result of the enrolment procedure

Teaching standards

educational standards in accordance with the directive of the Minister of Science and Higher Education, dated July 12, 2007 concerning the description of educational standards for particular study courses and education levels as well as procedures for establishment and the condiontions to be met by the university to conduct both interdisciplinary and conbined studies courses (Dz. U. No 164, item. 1166 incl. later amendments). The standards define general course requirements including the number of teaching hours, graduate`s profile, curricula for individual courses including subjects of general, core and specialist education as well as requirements and recommendations concerning internship.

Learning outcomes

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Resolution No. 27/51/2012 of the Senate of Bialystok University of Technology of 24 May 2012 on determining learning outcomes for first cycle courses in the field of Biomedical Engineering at Bialystok University of Technology

Meaning of symbols:
IBK (before underscores) – learning outcomes for the field of study
W – category of knowledge
U – category of skills
K (after underscores) – category of social competence
T1A – learning outcomes in the educational area of technical sciences for first cycle courses
M1– learning outcomes in the educational area of medical, health, and physical education sciences for first cycle courses
01, 02, 03 and subsequent numbers – number of the learning outcome

KNOWLEDGE

IBK_W01 - have a systematised knowledge of mathematics, including the knowledge of mathematical analysis, mathematical logics, algebra, geometry, the probability theory, and also elements of applied mathematics - T1A_W01, T1A_W07
IBK_W02 - have a systematised knowledge of classical physics and also the fundamentals of quantum mechanics, including general principles of physics, the fundamentals of mechanics, hydrodynamics, the fundamentals of molecular physics, thermodynamics, and optics; this involves the knowledge necessary to understand the basic physical phenomena in living organisms and in their surrounding - T1A_W01, M1_W02
IBK_W03 - have the knowledge of chemistry, including issues in organic, inorganic, and analytical chemistry, electrochemistry, and biochemistry (involving the knowledge necessary to understand the structure and properties of matter, basic laws and chemical transformations, including transformations which take place in living organisms and their surrounding) - T1A_W01, M1_W02
IBK_W04 - have a systematised knowledge of mechanics, including issues of statics, dynamics, and kinematics; this involves the knowledge necessary to perform basic strength calculations - T1A_W01, T1A_W02
IBK_W05 - have an elementary knowledge of the structure and functions of the human organism, including the knowledge necessary to the design of human-supporting and assisting systems - M1_W02
IBK_W06 - have a systematised and theoretically-based knowledge of biomechanics - T1A_W01, T1A_W03,
T1A_W04, M1_W02
IBK_W07 - have a systematised knowledge of the materials science, including medical materials and basic methods for testing these materials - T1A_W03, T1A_W04, T1A_W07
IBK_W08 - have a basic knowledge of the design of medical structures, including engineering graphics (involving structure recording), design methods, the structure and functioning of construction elements and assemblies, the fundamentals of calculations of construction elements and assemblies; graduates know computer-aided design methods and tools - T1A_W03, T1A_W07
IBK_W09 - have a basic knowledge of production technologies, necessary to design technological processes of simple medical products - T1A_W02, T1A_W07
IBK_W10 - have a basic knowledge of metrology; graduates know and understand methods for the measurement of geometrical dimensions, and also know the computational methods necessary to analyse measurement results - T1A_W03, T1A_W07
IBK_W11 - have an elementary knowledge of the fundamentals of electrical engineering and electronics - T1A_W02
IBK_W12 - have an elementary knowledge of the fundamentals of automatic control and robotics - T1A_W02
IBK_W13 - have an elementary knowledge of programming methods and techniques - T1A_W02
IBK_W14 - have a basic knowledge of information technology and computer graphics - T1A_W02
IBK_W15 - have an elementary knowledge of digital signal processing - T1A_W02
IBK_W16 - have the knowledge of the present state of and the newest development trends in medical devices - T1A_W05
IBK_W17 - have an elementary knowledge of the life cycle of medical equipment - T1A_W06
IBK_W18 - have a basic knowledge necessary to understand non-technical constraints of engineering activities; graduates know the basic occupational health and safety principles applied in the production of medical devices - T1A_W08
IBK_W19 - have an elementary knowledge of the protection of intellectual property and patent law - T1A_W10
IBK_W20 - have an elementary knowledge of management, including quality management, and of conducting business activity - T1A_W09
IBK_W21 - know general principles of creating and developing different forms of individual entrepreneurship - T1A_W11
IBK_W22 - have an elementary knowledge of interpersonal and social communication and also know the elementary concepts concerning selected humanities subjects
IBK_W23 - have a systematised knowledge of the functioning of the human musculoskeletal system, and also the knowledge of the design, technologies, selection and operation of equipment for people with disabilities or
have a systematised knowledge of biomaterials engineering - T1A_W04, M1_W03

SKILLS

IBK_U01 - can obtain information from literature, databases, and other sources, and also integrate and interpret the obtained information; graduates can draw conclusions as well as formulate and justify their opinions - T1A_U01
IBK_U02 - can work individually and in groups, using appropriate techniques - M1_U03
IBK_U03 - can develop results documentation of engineering tasks; graduates can prepare overviews of these results - T1A_U03
IBK_U04 - can prepare and give short presentations on the results of the implementation of engineering tasks - T1A_U03
IBK_U05 - have a knowledge of English or another foreign language considered as a basic language of communication for the field of Biomedical Engineering, at a level which is sufficient for communication and for reading and understanding operating instructions of devices and medical devices (and similar documents) - T1A_U01, T1A_U06
IBK_U06 - have the ability to self-educate, among others, in order to improve their professional competence - T1A_U05
IBK_U07 - have technical and manual skills with regard to biomedical engineering - M1_U01
IBK_U08 - can make use of the methods and computer simulations they have studied for evaluating materials and analysing systems used in the field of biomedical engineering - T1A_U08, T1A_U09
IBK_U09 - can compare design solutions of medical components, assemblies, and devices, according to the predefined functional and economic criteria - T1A_U05, T1A_U12, T1A_U15
IBK_U10 - can make use of appropriately selected development environments, simulators, and computer-aided design tools to simulate, design, and verify components, assemblies, and devices used in the field of biomedical engineering - T1A_U07, T1A_U08, T1A_U09
IBK_U11 - can make use of appropriately selected methods and devices for measuring the basic physical, chemical, and mechanical quantities of materials and finished products - T1A_U08, T1A_U09
IBK_U12 - plan and conduct simulations and also the basic measurements of the physical, chemical, mechanical, and biomechanical characteristics; graduates can present the obtained results in the numerical and graphical form, interpret these results, and draw correct conclusions - T1A_U07, T1A_U08, M1_U02
IBK_U13 - can perform simple analyses of the selection of medical materials, taking into consideration their biofunctional properties - T1A_U08, T1A_U09, T1A_U14
IBK_U14 - can design simple medical components and products, taking into account predefined functional and economic criteria, using appropriate methods, technologies, and tools - T1A_U12, T1A_U14, T1A_U15, T1A_U16
IBK_U15 - can use normative data, specification sheets, and application notes in order to choose the right components of the designed medical devices - T1A_U01, T1A_U16
IBK_U16 - can design the technological processes of simple medical devices - T1A_U01, T1A_U14, T1A_U16
IBK_U17 - can analyse and apply the organizational aspects of the health care system in their professional activities - T1A_U02, M1_U01
IBK_U18 - can use the information technology and computer graphics methods they have studied to prepare and present data - T1A_U03, T1A_U07
IBK_U19 - can perform elementary analyses of biomedical signals and images - T1A_U08, M1_U02
IBK_U20 - can conduct measurements of selected parameters of the human musculoskeletal system - T1A_U08,
M1_U02
IBK_U21 - are aware of non-technical aspects of tasks (including also the environmental, economic, and legal aspects) while formulating and solving tasks involving the design of medical materials, components, and devices - T1A_U10
IBK_U22 - apply principles of ergonomics as well as occupational health and safety - T1A_U11
IBK_U23 - can evaluate the relevance of standard methods and tools for solving simple engineering tasks typical of biomedical engineering; graduates can also select and use the appropriate methods and tools - T1A_U13
IBK_U24 - can analyse, design, and test simple automation systems - T1A_U08, T1A_U09
IBK_U25 - can analyse, design, and test simple electric and electronic circuits - T1A_U08, T1A_U09
IBK_U26 - can observe and interpret the surrounding social phenomena and apply the theories they have studied to analysing selected problems
IBK_U27 - can evaluate the significant parameters of the human musculoskeletal system and also design and produce simple individual orthopaedic devices, using appropriate methods, techniques, technologies, and tools or
can form properties of biomaterials as well as design their basic production processes and processing operations - T1A_U08, T1A_U09, T1A_U14, T1A_U15, T1A_U16

SOCIAL COMPETENCE

IBK_K01 - understand the need for life-long learning, mainly in order to improve their professional and personal competence - T1A_K01
IBK_K02 - can think and act in a resourceful way - T1A_K06
IBK_K03 - can cooperate and work in a team, assuming different roles - T1A_K03
IBK_K04 - can appropriately determine priorities for implementing tasks defined by themselves or other people - T1A_K04
IBK_K05 - understand and realise the importance of non-technical aspects and results of engineering activities, including the influence of these activities on the environment, and the responsibility for decisions pertaining to the activities - T1A_K02
IBK_K06 - are aware of the social role of graduates of technical universities; in particular, they understand the need to formulate and inform the society, among others, through the mass media, about developments in technology and other aspects of engineering activities; they endeavour to provide such information and opinions in a commonly understandable way - T1A_K07
IBK_K07 - implement tasks in a way which ensures their own safety and the safety of their surrounding; this involves applying occupational safety principles - M1_K07

Admission procedures:

Visit the following page for details on admission procedures: https://irk2.uci.pb.edu.pl