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FSI-R3DAcad. year: 2022/2023
The students will have a basic knowledge of nonlinear and stochastic models of engineering systems and its operation and responses. They will be able to calculate a typical linearized model of these systems. They will be able to solve practical problems that can be modelled in this way. The student will have knowledge of the chaotic operation and they will be able to analyse responses of dynamic system with random vibration or seismic excitation.
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Learning outcomes of the course unit
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Assesment methods and criteria linked to learning outcomes
The course-unit credit is granted under the condition of active participation in seminars and gain at least 20 points of 40. The gained points from the exercise is part of the final classification of the subject. Final examination: The exam is divided into two parts. The evaluation of the exam is based on the classifications of each part. If one of the parts is graded F, the final grade of the exam is F. The content of the first part is a test, of which a maximum of 20 points can be obtained. The content of the second part is a solution of typical presented problems. It is possible to gain up to 40 points from this part. The form of the exam, types, number of examples or questions and details of the evaluation will be given by the lecturer during the semester. The final evaluation is given by the sum of the points gained from the exercises and exam. To successfully complete the course, it is necessary to obtain at least 50 points, where the maximum of 100 ECTS points can be reached.
Course curriculum
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Aims
Specification of controlled education, way of implementation and compensation for absences
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Basic literature
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Elearning
Classification of course in study plans
specialization IME , 1 year of study, summer semester, compulsoryspecialization BIO , 1 year of study, summer semester, compulsory
branch CZV , 1 year of study, summer semester, compulsory
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Syllabus
Computer-assisted exercise