Mechatronics Programme code: 08-S2MCH14.2017

Field of study: | Mechatronics |
---|---|
Programme code: | 08-S2MCH14.2017 |
Programme code (USOS): | 08-S2MCH14 |
Faculty: | Faculty of Science and Technology |
Language of study: | Polish |
Academic year of entry: |
|
Level of qualifications/degree: | second-cycle studies |
Mode of study: | full-time |
Degree profile: | general academic |
Number of semesters: | 3 |
Degree: | magister (Master's Degree) |
Access to further studies: | the possibility of applying for post graduate and doctoral studies |
Areas, fields and disciplines of art or science to which the programme is assigned: |
|
ISCED code: | 0714 |
The number and date of the Senate’s resolution: | 240 (18/03/2014) |
General description of the programme: | |
---|---|
Organization of the process of obtaining a degree: | |
Internships (hours and conditions): | |
Graduation requirements: | |
Number of ECTS credits required to achieve the qualification equivalent to the level of study: | |
Professional qualifications: | |
Connection between the field of study and university development strategy, including the university mission: | |
Percentage of the ECTS credits for each of the areas to which the learning outcomes are related to the total number of ECTS credits: |
KNOWLEDGE The graduate: |
---|
has extended knowledge in a field of mathematics with an application of: the theory of algebraic transformations, ordinary and partial differential equations and symbolic transformations allowing an advanced description, designing and operations of objects, equipment, systems or processes typical for mechatronics of electro-mechanical and electronic systems and robotics [K2A_W01] |
has detailed knowledge in a scope of making and shaping properties of typical engineering materials, used for needs of mechatronics of electro-mechanical and electronic systems and robotics [K2A_W02] |
has detailed knowledge in a scope of materials and material technologies used in electrical engineering, mechanics, automatic control engineering and robotics [K2A_W03] |
has advanced knowledge in a scope of the architecture of systems and computer networks and operating systems and network applications needed to install, service and maintain IT tools for simulating and designing mechatronic elements, arrangements and systems [K2A_W04] |
has extended and increased knowledge in a scope of automatic control engineering and robotics and programming and controlling robots and manipulators considering development trends in the modern industry connected with designing, making, constructing and operating mechatronic equipment [K2A_W05] |
has extended knowledge in a field of mechanics enabling to solve technical problems connected with designing, constructing and operating of mechatronic equipment [K2A_W06] |
has ordered theoretically founded knowledge in a scope of mechanical engineering and machine operating [K2A_W07] |
has basic knowledge about a lifecycle of mechatronic equipment, objects and systems [K2A_W08] |
knows tools for designing and a simulation of mechatronic arrangements and systems [K2A_W09] |
has knowledge needed to understand social, economic, legal and other non-technical conditions of engineering activities and he/she takes them into account in the engineering practice; he/she knows basic safety rules of occupational safety and health in force in the industry making and implementing the mechatronic systems [K2A_W10] |
has basic knowledge in a scope of management , including quality management and conducting a business activity [K2A_W11] |
knows and understands extended concepts and principles in a scope of protection of industrial and intellectual property and a necessity of management of intellectual property resources, and also making and developing forms of individual entrepreneurship; he/she can use patent information resources [K2A_W12] |
SKILLS The graduate: |
---|
can obtain information from literature, databases and other properly selected sources, including in a foreign language (e.g. English); he/she can integrate the obtained information, make its interpretations, and also draw conclusions and formulate and justify opinions [K2A_U01] |
can communicate using different techniques in the professional environment and other environments, including English language [K2A_U02] |
can: prepare, document and elaborate advanced issues characteristic for the technical science and its scientific disciplines: mechatronics, electrical engineering, electronics, mechanics and automatic control engineering and robotics, in a written form in the Polish and English language [K2A_U03] |
can prepare and make an oral presentation in the Polish language and a foreign language, concerning the selected issues from the scope of: mechatronics, electrical engineering, electronics, mechanics and automatic control engineering and robotics [K2A_U04] |
can determine a state of his/her knowledge in the field of mechatronics and he/she has an ability of self-education with use of sources from library resources, electronic sources and databases [K2A_U05] |
can draw up documentation in the Polish language and a foreign language concerning an implementation of an engineering task and prepare the text containing a discussion of the results of the implementation of this task [K2A_U06] |
can prepare and make an oral presentation of the results of the engineering task implementation in the Polish language and a foreign language devoted to the results of the engineering task implementation [K2A_U07] |
has language skills to communicate and read index cards, application notes, with comprehension, manuals of mechatronic equipment and IT tools and similar documents, according to the requirements determined for level b2+ of the Common European Framework of Reference for Languages [K2A_U08] |
can use IT and communication technologies ( programming environments, simulators and computer aided design tools) appropriate for implementing tasks in a scope designing, making and operating of the complex mechatronic equipment [K2A_U09] |
can: plan and conduct experiments ( make measurements and computer simulations), draw conclusions and interpret the obtained results in a numerical and graphic form [K2A_U10] |
can use analytical, simulation and experimental methods, formulate and test hypotheses connected with possible engineering and research problems present while verifying mechatronic elements and complex systems [K2A_U11] |
can evaluate usefulness and possibilities of use of new achievements (techniques and technologies) in a scope of mechatronics and make a preliminary economic analysis of the engineering activities undertaken [K2A_U12] |
can compare design solutions of mechatronic elements and systems with reference to required applied and economic, ergonomic and ecological criteria in a scope of recycling of the used systems, and he/she can also notice their non-technical aspects, including environmental, economic and legal ones [K2A_U13] |
have the necessary preparation for work in the industrial environment and he/she knows safety principles connected with this work [K2A_U14] |
formulates and justifies a critical analysis of functioning of existing technical solutions, equipment, objects, systems, processes connected with mechatronics [K2A_U15] |
can propose improvements and implement modifications in the existing technical solutions of elements, arrangements and simple mechatronic systems, at the stage of their analysis and desig [K2A_U16] |
can design complex mechatronic units consisting of: electrical engineering, electronic, mechanical , automatic control engineering and robotic systems, draw their diagram, select elements and assemble them [K2A_U17] |
can evaluate usefulness and notice possible limitations of the methods and tools for modeling, simulations, analysis or solving tasks typical for mechatronics, and he/she can select and use methods and tools appropriate for the problem posed, providing the optimum operation of the mechatronic systems [K2A_U18] |
can evaluate initial costs and estimated costs of the engineering projects performed, connected with mechatronics [K2A_U19] |
can build, start and test the designed arrangement or a simple mechatronic system [K2A_U20] |
has abilities and competences to: design IT systems, including preparation and testing of software; a selection and an implementation of algorithms of signal processing; an analysis and processing of images; use of artificial intelligence in mechatronics [K2A_U21] |
SOCIAL COMPETENCES The graduate: |
---|
is aware of a level of his/her knowledge and abilities; he/she understands a need of continuing professional education and a personal development [K2A_K01] |
is aware of importance and effects of activities of an engineer of mechatronics, he/she understands non-technical aspects of its impact on the environment and a responsibility for the decisions undertaken connected with it [K2A_K02] |
can identify properly priorities for implementing the task posed by himself/herself or others and he/she is aware of importance of regular work [K2A_K03] |
is aware of a responsibility for his/her own work and is ready to subject to rules of teamwork and bear responsibility for jointly performed professional tasks, respecting the principles of professional ethics and a diversity of beliefs and cultures [K2A_K04] |
can act in a creative and enterprising way using the rules of making and developing forms of individual entrepreneurship and knowledge in the scope of management and production engineering [K2A_K05] |
is aware of a social role of a graduate of a technical university, in particular he/she understands a need for formulating and conveying to the public ( by the mass media) information and opinions on achievements of mechatronics and other aspects of activities of an engineer of mechatronics; he/she makes efforts to convey such information and opinions in a commonly understood way, with justification of different points of view [K2A_K06] |
Module | Language of instruction | Form of verification | Number of hours | ECTS credits |
---|---|---|---|---|
(no information given) |
Module | Language of instruction | Form of verification | Number of hours | ECTS credits |
---|---|---|---|---|
(no information given) |
Module | Language of instruction | Form of verification | Number of hours | ECTS credits |
---|---|---|---|---|
(no information given) |