Course: Physics I

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Course title Physics I
Course code TUFMI/TE2F1
Organizational form of instruction Lecture
Level of course Bachelor
Year of study not specified
Semester Summer
Number of ECTS credits 5
Language of instruction English
Status of course unspecified
Form of instruction Face-to-face
Work placements This is not an internship
Recommended optional programme components None
Course availability The course is available to visiting students
Lecturer(s)
  • Ponížil Petr, prof. RNDr. Ph.D.
  • Sližová Marta, RNDr. CSc.
Course content
- Kinematics I. - Kinematics II. - Dynamics I. - Dynamics II. - Motion of system of mass points. - Liquids. - The electric and gravitational fields. - Capacity. - Direct electric current I. - Direct electric current II. - The magnetic field. - Electric-magnetic induction. - R,L,C circuirs. - Repetition.

Learning activities and teaching methods
Lecturing, Activating (Simulation, games, dramatization), Practice exercises
  • Preparation for examination - 150 hours per semester
prerequisite
Knowledge
Basic knowledge in mathematics.
Basic knowledge in mathematics.
learning outcomes
explain the concepts and laws of material point mechanics
explain the concepts and laws of material point mechanics
explain the concepts and laws of mechanics of the system of material points
explain the concepts and laws of mechanics of the system of material points
explain the concepts and laws of oscillations and waves
explain the concepts and laws of oscillations and waves
explain the concepts and laws of acoustics
explain the concepts and laws of acoustics
explain the concepts and laws of thermodynamics
explain the concepts and laws of thermodynamics
Skills
apply the laws of material point mechanics
apply the laws of material point mechanics
apply the laws of mechanics of the system of material points
apply the laws of mechanics of the system of material points
apply the laws of oscillation and waves
apply the laws of oscillation and waves
apply the principles of acoustics
apply the principles of acoustics
solve problems in thermals
solve problems in thermals
teaching methods
Knowledge
Lecturing
Activating (Simulation, games, dramatization)
Lecturing
Activating (Simulation, games, dramatization)
Skills
Practice exercises
Practice exercises
Dialogic (Discussion, conversation, brainstorming)
Dialogic (Discussion, conversation, brainstorming)
assessment methods
Knowledge
Systematic observation of the student
Systematic observation of the student
Oral examination
Oral examination
Recommended literature
  • FEYNMAN, R.P., LEIGHTON, R.B., SANDS, M. Feynmanovy přednášky z fyziky s řešenými příklady. Havlíčkův Brod : Fragment, 2000.
  • Halliday D., Resnick R., Walker J. Fundamentals of Physics. Willey, 2008. ISBN 978-0-471-75801-3.
  • Halliday, David. Fyzika : vysokoškolská učebnice obecné fyziky. Vyd. 1. Brno : Vutium, 2000. ISBN 8021418699.
  • Kuhn, Karl F. Basic physics : a self-teaching guide. 2nd ed. New York : John Wiley & Sons, 1996. ISBN 471134473.
  • Serway, R. A., Jewett, J. W. Physics for Scientists and Engineers. Belmont : Brooks/Cole Thomson Learning, 2004. ISBN 0534408443.


Study plans that include the course
Faculty Study plan (Version) Category of Branch/Specialization Recommended year of study Recommended semester