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Mechatronics (MNIKA)

(in Polish: Mechatronika, 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

Learning outcomes

We have more than one version of this field. Click below and select the version you want to see:

Resolution No. 305/XXI/XIV/2014 of 24 April 2014 passed by the Senate of the University of Bialystok; Resolution No. 532/XXXII/XIV/2015of 24 September 2015 passed by the Senate of the University of Bialystok on determining the effects of education adopted for conducting an education program at the University of Technology in Bialystok for first degree in mechatronics

Symbol - Learning outcomes for Mechatronics - Learning outcome reference

KNOWLEDGE
The Engineer who has graduated in Mechatronics

SM_ W01 - has well-structured knowledge of mathematics related to matrix calculus, complex numbers, elements of analytical geometry, differential and integral calculus of a function of one and more variables, probability and elements of applied statistics - T1A_W01, T1A_W07
SM_W02 - has well-structured knowledge of physics and chemistry which may be helpful in understanding of phenomena and processes occurring at different stages of production and operation of mechatronic devices and possesses knowledge required to understand the structure and properties of matter - T1A_W01, T1A_W07
SM_W03 - has knowledge of mechanics related to statics, kinematics and dynamics of mechanisms in machines and robots as well as knowledge of fundamentals of material strength; understands the theoretical rudiments of structure of machines and devices - T1A_W02
SM_W04 - has elementary knowledge of the structure, operation as well as mechanical devices and mechatronic systems construction rules - T1A_W03, T1A_W04
SM_W05 - has basic knowledge of recent advances in mechatronic systems - T1A_W05
SM_W06 - has elementary knowledge related to protection of intellectual property, including patent and copyright law and using patent information - T1A_W10
SM_W07 - has organized knowledge, with firm theoretical foundations, about fluid flow phenomena - T1A_W02, T1A_W04
SM_W08 - has basic knowledge of graphical representation of the structure of components and sets of machines, of their dimensioning for structural and technological purposes and drawing up technical documentation for machines and devices - T1A_W03, T1A_W04, T1A_W07
SM_W09 - has elementary knowledge of computer operating systems, databases and methods of implementing computing tools in engineering, methods and techniques of programming, knows planning principles - T1A_W02, T1A_W03
SM_W10 - Has basic knowledge necessary in understanding out of technical engineering activities; knows and understands basic safety and hygiene rules and regulations which ought to be followed in industry - T1A_W08
SM_W11 - has basic knowledge of automatic control and automation, robotics and mechatronics, which may be helpful in understanding of modern technological objects - T1A_W02, T1A_W04
SM_W12 - has basic knowledge related to the theory of electrical circuits and electronic elements, knows the structure of the most common electrical devices and understands how they work - T1A_W02, T1A_W04
SM_W13 - has essential knowledge related to the properties and selection of engineering materials as well as familiarity with basic research methods and ways of modifying properties of such materials - T1A_W02, T1A_W04
SM_W14 - knows measuring techniques, understands measurement methods, knows calculation methods and computing tools which are necessary for the analysis of measurement results and planning experiments - T1A_W03, T1A_W04, T1A_W07
SM_W15 - has basic knowledge about signal and image representation, their descriptions, processing and
Transmitting - T1A_W02
SM_W16 - has knowledge of describing static and dynamic qualities of elements and systems of automatic control; knows methods of investigating linear systems and has basic knowledge about modelling of linear and non-linear elements and systems of automatic control - T1A_W02, T1A_W04,
T1A_W07
SM_W17 – has knowledge about the structure, kinematics and dynamics of robots; knows robot and automatic control programming languages - T1A_W03, T1A_W04, T1A_W05

SM_W18 - has elementary knowledge of CAD and CAM - T1A_W03, T1A_W04, T1A_W07
SM_W19 - has organized knowledge about the tool production technologies and the latest technologies applied to shape the form, structure and properties of products - T1A_W02, T1A_W03
SM_W 20 - has elementary knowledge related to management, also quality management and running a business, and knows general principles of the foundation and development of various forms of individual entrepreneurship - T1A_W09, T1A_W11
SM_W 21 - has elementary knowledge of interpersonal and social communication and knows basic concepts related to selected humanities - T1A_W08
SM_W 22 - has knowledge of the maintenance and diagnostics of technical systems related to ageing processes and lifecycle of machines, their use, operating, diagnosing, monitoring and/or scheduling diagnostic tests - T1A_W04, T1A_W06
SM_W 23 - has elementary knowledge related to electric drive mechanisms, digital and microprocessor technology, knows the principles of operation of A/D and D/A converters - T1A_W02

SKILLS
The Engineer who has graduated in Mechatronics

SM_U01 - can acquire information from literature, databases and other sources; can integrate and interpret the obtained information and draw conclusions as well as formulate and justify opinions; has ability for self-education - T1A_U01, T1A_U05
SM_U02 - can work individually and in a team using appropriate techniques; can schedule his or her work and meet deadlines when doing an assignment - T1A_U02
SM_U03 - can prepare and present technical documentation of machines and mechatronic systems, prepare presentation of the results, can communicate with experts in different technological fields - T1A_U02, T1A_U03, T1A_U07
SM_U04 - has sufficient competence in a foreign language to communicate, read and edit technical documents - T1A_U01, T1A_U06
SM_U05 - can use documents and technical standards in order to choose appropriate materials and components for the designed mechatronic system - T1A_U01, T1A_U16
SM_U06 - can use CAD and CAM methods and tools, can make selection of materials - T1A_U07,
T1A_U09
SM_U07 - can select appropriate methods and measurement devices, take measurements, archive, discuss and correctly interpret the results - T1A_U08
SM_U08 - can prepare assumptions for automation of a simple technological process, can schedule the process of developing a simple mechatronic device and estimate its cost - T1A_U12, T1A_U13, T1A_U14, T1A_U16
SM_U09 - can use computer networks, databases and AI (artificial intelligence) methods - T1A_U07
SM_U10 - can create an algorithm and write a computer program, program controllers in unit processes or controllers operating in industrial networks - T1A_U14, T1A_U16
SM_U11 - can perform an analysis of simple heat transfer phenomena and prepare mass and energy balance - T1A_U09
SM_U12 - can design continuous and discrete control systems taking functional and economic conditions into account - T1A_U14, T1A_U16, T1A_U12
SM_U13 - can conduct analysis and synthesis of simple digital and microprocessor systems, create a controlling algorithm - T1A_U09
SM_U14 - can design, configure, program and test mechatronic systems composed of standard components - T1A_U13, T1A_U16
SM_U15 - can analyse signals and images using analogue and digital technologies and appropriate hardware and software tools - T1A_U09
SM_U16 - can shape properties of materials and design basic processes to process these materials - T1A_U14, T1A_U16
SM_U17 - can compare construction solutions of mechatronic devices and systems taking into account the set functional and economic criteria - T1A_U12
SM_U18 - can design a technological process and choose or design tools and devices to realize it, and also create controlling algorithm for a CNC machine or a robot to manufacture simple machine parts - T1A_U13, T1A_U14
SM_U19 - can design machine parts, mechanical units and complete mechanical devices - T1A_U15,
T1A_U16
SM_U20 - can present elements and machine units in a graphic form, take their measurements and prepare technical documentation - T1A_U03, T1A_U07
SM_U21 - can conduct kinematic and dynamic analysis of simple mechanisms and also can conduct evaluation of energy conversion efficiency of machines and devices - T1A_U09, T1A_U14
SM_U22 - can analyse, design and investigate simple electrical and electronic circuits - T1A_U08, T1A_U09, T1A_U16
SM_U23 - can perceive – while formulating and solving problems which involve designing mechatronic systems and machines – their non-technical aspects, including environmental, economic and legal ones; applies the principles of ergonomics, occupational safety and health - T1A_U10, T1A_U11

SOCIAL COMPETENCE
The Engineer who has graduated in Mechatronics

SM_K01 - understands the need and is aware of the opportunities for continuous self-education (postgraduate and PhD studies, courses), improving professional, personal and social competence - T1A_K01
SM_K02 - is aware of the importance and understands non-technical aspects and outcomes of a mechatronics engineer‘s actions, including their effect on the environment and the ensuing responsibility for the decisions taken - T1A_K02
SM_K03 - is aware of the importance of professional behaviour and the need to follow professional ethics, responsibility for one’s own work, is ready to comply with rules of teamwork and to take responsibility for any team assignment - T1A_K03, T1A_K04, T1A_K05
SM_K04 - can think and act in a resourceful way - T1A_K06

Admission procedures:

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