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Education
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2015-obecnie
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Lodz University of Technology, Faculty of Mechanical Engineering, field of study: Mechanics, third-cycle degree, mode of study: full-time.
Research work related to two-dimensional friction and electro-magneto-mechanical systems.
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2014 - 2015
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Lodz University of Technology, Faculty of Mechanical Engineering, field of study: Automatic Control and Robotics, second-cycle degree, mode of study: full-time. Received title: magister (equivalent of Master of Science)
Title of the thesis: “Modification of dry friction characteristics by intentionally introduced dither”
Awarded the Curran – Werner Prize
Selected projects:
-Springs secluding and distributing device,
-Automatic loader for CNC lathe,
-Program which finds the shortest way in a graph which is represented in the form of an adjacency list, using A* search algorithm.
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2010 - 2014
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Lodz University of Technology, Faculty of Mechanical Engineering, field of study: Mechatronics, first-cycle degree, mode of study: full-time. Received title: inżynier (equivalent of Bachelor of Science)
Title of the thesis: “Mechanisms of common use. Numerical simulations of chosen kinematic pairs and chains in applications designed for Android operating system”
Finalist of the local stage of the 7TH BEST Engineering Competition Poland.
Selected projects:
-Mechanical press for workshop use,
-Servomechanism – ball screw assembly,
-Colour-recognizing application for Android mobile devices.
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Didactics
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Tutorials
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Technical Mechanics |
Laboratory
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Technical Mechanics II
Basics of Automation and Mechatronics
Automation
Mechatronics
Microautomation
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Qualifications and additional skills
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English
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Advance level - C1.
Cambridge English Certificate in Advanced English (CAE) Pass at Grade B
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Computer programs
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Advanced knowledge of: MS Office – Word, Excel, Power Point; Autodesk AutoCad, Autodesk Inventor, Wolfram Mathematica.
Basic knowledge of: Matlab + Simulink, ERP sytem SAP.
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Papers in Scientific Journals
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2018
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Wojna M., Wijata A., Wasilewski G., Awrejcewicz J. (2018). Numerical and experimental study of a double physical pendulum with magnetic interaction. Journal of Sound and Vibration, 430, 214–230 (IF = 2.618 )
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(in review)
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Polczyński K., Wijata A., Wasilewski G. Awrejcewicz J. Numerical and experimental study of dynamics of two pendulums under a magnetic field. Journal of Systems and Control Engineering (IF = 0.988)
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2017
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Wijata A., Awrejcewicz J., Matej J., Makowski M. (2017). Mathematical model for two-dimensional dry friction modified by dither. Mathematics and Mechanics of Solids, 22(10), 1936–1949 (IF = 2.545)
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Papers in Conferences Proceedings
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2017
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Polczyński K., Wasilewski G., Awrejcewicz J., Wijata A. (2017). Modeling and experimental investigation of dynamics of two pendulums elastically coupled and driven by magnetic field, Engineering Dynamics and Life Sciences, 451–462.
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Wojna M., Wasilewski G., Awrejcewicz J., Wijata A. (2017), Dynamics of a double physical pendulum with magnetic interaction, Vibration, Control and Stability of Dynamical Systems, 559-570.
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2015
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Wijata A., Awrejcewicz J., Matej J., Makowski M. (2015). Mathematical model for two-dimensional dry friction modified by dither, Dynamical Systems - Mechatronics and Life Sciences, 587-594.
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Scientific Conferences
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2017
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14th international conference „Dynamical Systems – Theory and Application”, Łódź, December, 11-14, 2017 – presentation.
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2015
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13th international conference „Dynamical Systems – Theory and Application”, Łódź,, December, 7-10, 2015 – poster.
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