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Course syllabus FYZ101_6B - Physics I (MTF - SS 2011/2012)


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University: Slovak University of Technology in Bratislava
Faculty: Faculty of Materials Science and Technology in Trnava
Course unit code: FYZ101_6B
Course unit title: Physics I
Mode of delivery, planned learning activities and teaching methods:
lecture2 hours weekly (on-site method)
2 hours per semester of study (combined method)
seminar2 hours weekly (on-site method)
2 hours per semester of study (combined method)

 
Credits allocated: 6
 
Recommended semester/trimester: Applied Informatics and Automation in Industry - bachelor (compulsory), 2. semester
Applied Informatics and Automation in Industry - bachelor (compulsory), 2. semester
Computer-Aided Production Technologies - bachelor (compulsory), 2. semester
Computer-Aided Production Technologies - bachelor (compulsory), 2. semester
Industrial Management - bachelor (compulsory), 2. semester
Industrial Management - bachelor (compulsory), 2. semester
Manufacturing Technologies - bachelor (compulsory), 2. semester
Manufacturing Technologies - bachelor (compulsory), 2. semester
Materials Engineering - bachelor (compulsory), 2. semester
Materials Engineering - bachelor (compulsory), 2. semester
Occupational Health and Safety - bachelor (compulsory), 2. semester
Occupational Health and Safety - bachelor (compulsory), 2. semester
Personnel Policy in Industrial Plant - bachelor (compulsory), 2. semester
Personnel Policy in Industrial Plant - bachelor (compulsory), 2. semester
Production Devices and Systems - bachelor (compulsory), 2. semester
Production Devices and Systems - bachelor (compulsory), 2. semester
Quality of Production - bachelor (compulsory), 2. semester
Quality of Production - bachelor (compulsory), 2. semester
Level of study: -- item not defined --
Prerequisites for registration: none
 
Assesment methods:
continuous control exams
 
Learning outcomes of the course unit:
To adopt the interpretation of fundamental natural laws based on physical laws, formulated using higher mathematics. To develop creative thinking of students by applying this knowledge. To create conditions for successful completion of technical themes by selecting the course content.
 
Course contents:
Kinematic quantities describing the translational and rotational motion. Dynamic description of the motion of mass point and rigid bodies: force, work, energy, momentum, torque, angular momentum, center of gravity. Use of conservation laws. Physical fields, gravitational fields. Newton's law of gravity, motion in a gravitational field. The potential and the intensity of the gravitational field and their relationship. Mechanical oscillations, equation of motion for a linear harmonic oscillator, energy of the linear harmonic oscillator. Damping, forced oscillations and resonance. State variables, the ideal gas equation of state, the correction of the equation of state for real gases, thermal dilatability and thermal expansion of gas, absolute temperature scale, characteristic of thermodynamic processes. The internal energy of gas, the mean kinetic energy, the gas pressure in terms of kinetic theory. Heat, gas work. The first law of thermodynamics. Heat capacity of gas, thermodynamic potentials, thermal engine. Laws describing the diffusion, mechanisms of heat transfer.
 
Recommended or required reading:
Recommended:
ATKINS, P.W. Fyzikálny chémia 1. (Slovenský preklad) Bratislava: STU, 1999. 350s.
DILLINGER, J.—BENCO, P. – KALUŽNÁ, M. Fyzika I. Bratislava: STU, 2005. 186 s.
HAJKO, V. -- DANIEL-SZABÓ, J. Základy fyziky. Bratislava: VEDA, 1980. 575 s.
HAJKO, V. Fyzika v príkladoch. 6. vyd. Bratislava: Alfa, 1988. 591 s.
HALLIDAY, D. -- RESNICK, R. -- WALKER, J. Fyzika. (Český preklad) Brno: VUTIUM, 2000.
KREMPASKÝ, J. Fyzika. Bratislava: Alfa, 1992. 751 s.
LABAŠ, V. -- MINÁRIK, S. Fyzika 1 : Príklady a úlohy. 1. vyd. Bratislava: STU v Bratislave, 2002. 263 s.
ŠŤAVINA, C.. a kol. Fyzika. Príklady a úlohy. Bratislava: Alfa 1985

 
Language of instruction: -- item not defined --
 
Notes:
 
Courses evaluation:
Assessed students in total: 4395

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0,7 %1,8 %4,8 %9,0 %49,7 %34,0 %
Name of lecturer(s): RNDr. Andrej Antušek, PhD. (examiner, instructor, lecturer) - slovak
Mgr. Ondrej Bošák, PhD. (examiner, instructor) - slovak
doc. Ing. Roman Čička, PhD. (instructor) - slovak
Mgr. Andrej Dobrotka, PhD. (examiner, instructor, lecturer) - slovak
Mgr. Filip Holka, PhD. (examiner, instructor) - slovak
RNDr. Helena Hološová, PhD. (examiner, instructor) - slovak
RNDr. Igor Jančuška, PhD. (examiner, instructor) - slovak
doc. Ing. Ján Klima, CSc. (examiner, instructor, lecturer) - slovak
Ing. Milan Kováčik (examiner, instructor, lecturer) - slovak
Mgr. Jozef Krajčovič, PhD. (examiner, instructor, lecturer) - slovak
RNDr. Karol Kvetan, CSc. (examiner, instructor, lecturer) - slovak
doc. RNDr. Vladimír Labaš, PhD. (examiner, instructor) - slovak
doc. Ing. Stanislav Minárik, PhD. (examiner, instructor, lecturer) - slovak
RNDr. Peter Perichta, CSc. (examiner, instructor, lecturer) - slovak
RNDr. Pavol Priputen, PhD. (examiner, instructor) - slovak
Ing. Juraj Sztankay, CSc. (examiner, instructor, lecturer) - slovak
prof. RNDr. Miroslav Urban, DrSc. (person responsible for course) - slovak
 
Last modification: 17. 9. 2012
Supervisor: prof. RNDr. Miroslav Urban, DrSc. and programme supervisor


Last modification made by Mgr. Alena Kopčanová on 09/17/2012.

Type of output: