Course: Dynamics

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Course title Dynamics
Course code KMMCS/PDYAP
Organizational form of instruction Lecture + Tutorial
Level of course Bachelor
Year of study not specified
Semester Winter and summer
Number of ECTS credits 5
Language of instruction Czech
Status of course Compulsory
Form of instruction Face-to-face
Work placements This is not an internship
Recommended optional programme components None
Lecturer(s)
  • Kout Jan, doc. Ing. CSc.
  • Hába Aleš, Ing. Ph.D.
Course content
Kinematics of point, harmonic motion, kinematics of rigid body (translation and rotary motion). Kinematics of general plane motion, basic resolution of motion (motion as sum of a translation and a rotation). Dynamics of free motion of a particle in a plane. Dynamics of fixed motion of a particle in a plane, dynamics of relative motion of a particle. Dynamics of translation of rigid body, dynamics of rotation of rigid body about a fixed axis. Moments of inertia. Dynamics of rolling cylinder. Vibration of mechanical oscillator with single degree of freedom, free vibration, forced damping vibration-harmonic exciting force, polyharmonic excitation. Vibration of mechanical oscillator with single degree of freedom, exciting force as function of revolutions, kinematics excitation. Free oscillation of linear oscillator with two degree of freedom, natural frequency, natural mode of vibration. Forced vibration of linear oscillator with two degree of freedom, theory of dynamic damper. Lagrange´s equations, bases of vibration of continuum. Longitudinal vibration of thin uniform beams, Rayleigh´s energetic method. Time reserve and summary.

Learning activities and teaching methods
Monologic (reading, lecture, briefing), Dialogic (discussion, interview, brainstorming)
Learning outcomes
Aim of the course unit is acquaint students with a teaching about motion of rigid bodies and elastic bodies and their systems with emphasis on motion, on instances make clear bases of oscillating of discrete systems and systems with continuously distributed parameters (continuums).
After graduation of the subject can student set together and solve equations of motion for dynamics of particle, of rigid body and their systems, can calculate moments of inertia and products of inertia of rigid bodies, has basic knowledges to solving linear vibrating systems with single and two degree of freedom and have mastered the bases vibration of continuums.
Prerequisites
Presumption of successful studies is very good knowledge of Mechanics I and Mechanics II of baccalaureate studies.

Assessment methods and criteria
Oral examination

The requirements will be defined by lecturer.
Recommended literature
  • Juliš, K., Brepta, R. a kol. Mechanika II. Díl., Dynamika; Technický průvodce sv.66. SNTL Praha, 1987.


Study plans that include the course
Faculty Study plan (Version) Category of Branch/Specialization Recommended year of study Recommended semester
Faculty: Faculty of Transport Engineering Study plan (Version): Transport Means: Road Vehicles (2016) Category: Transportation and communications 2 Recommended year of study:2, Recommended semester: Summer
Faculty: Faculty of Transport Engineering Study plan (Version): Transport Means: Environmental Protection in Transport (2016) Category: Transportation and communications 2 Recommended year of study:2, Recommended semester: Summer
Faculty: Faculty of Transport Engineering Study plan (Version): Transport Means: Rail Vehicles (2016) Category: Transportation and communications 2 Recommended year of study:2, Recommended semester: Summer