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Lecturer(s)
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Tomek Petr, doc. Ing. Ph.D.
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Course content
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unspecified
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Learning activities and teaching methods
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Monologic (reading, lecture, briefing), Methods of individual activities
- Preparation for an exam
- 24 hours per semester
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Learning outcomes
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Aim of the course unit is acquaint students with bases of free and forced vibration of non-linear discrete mechanical systems as well as methods solution of non-linear equations of motion, with methods of linearization of equations of motion, with basics of theory of plasticity and its conditions and basic system of equations of theory of plasticity as with solution to the problems of theory of plasticity.
After graduation of the subject regaining student setings for solving of nonlinear exercises of mechanics and problems of plasticity.
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Prerequisites
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The following basis knowledge is supposed: mathematics (linear algebra, matrix calculus, eigenproblems, nonlinear differential equations), mechanics (dynamics, strength of materials).
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Assessment methods and criteria
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Discussion
The requirements will be defined by lecturer.
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Recommended literature
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Výpočet válcových tenkostěnných kovových nádob a potrubí. 1967, 1967.
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Bathe K. J. a E. L. Wilson. Numerical method in finite element analysis. Englewood Sliffs. Prentice Hall, 1976.
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Bitnar z. a P. Řeřicha. Metoda konečných prvků v dynamice konstrukcí. Praha SNTL, 1981. 1981.
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Bushnell, D. Computerized buckling analysis of shells.Martinus Nijhoff publishers. Dordrecht / Boston / Lancaster. (1985) ISBN 90-247-3099-6.. Martinus Nijhoff publisers. Dordrecht/Boston/Lancaster, 1985. ISBN 90-247-3099-6.
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Esslinger M., Geier B. Postbuckling behavior of structures. Springer, 1975.
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European Convention for Constructional Steelwork. Buckling of Steel Shells - European Desing Recommendations.. [S.l.]: ECCS - European Convention for Constructional Steelwork, 2008.
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Herbert SCHMIDT. ECCS - European Conversion for Constructional Steelwork. 2013. ISBN 978-92-9147-116-4.
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Paščenko, Petr. Stabilita kulového vrchlíku : [stabilita tenkostěnných skořepinových konstrukcí] : monografie. Pardubice: Univerzita Pardubice, 2013. ISBN 978-80-7395-697-4.
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Timoshenko S. Theory of Elastic Stability. New York and London: McGraw-Hill Book Company, Inc., 1936.
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Volmir A. C. Ustojčivosť uprugich sistěm. Moskva: Gosudarstvennoe izdátělstvo fiziko-matematičeskoj literatury, 1963.
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ZIENKIEWICZ O.C. The finite element method in engineering science. London McGraw-Hill, 1971. ISBN 0070941386.
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