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Course info
KFY / TFYS2
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Course description
Department/Unit / Abbreviation
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KFY
/
TFYS2
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Academic Year
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2023/2024
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Academic Year
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2023/2024
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Title
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Physics for Mechanical Engineers 2
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Form of course completion
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Pre-Exam Credit
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Form of course completion
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Pre-Exam Credit
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Accredited / Credits
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Yes,
3
Cred.
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Type of completion
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Combined
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Type of completion
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Combined
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Time requirements
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Lecture
2
[Hours/Week]
Tutorial
1
[Hours/Week]
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Course credit prior to examination
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No
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Course credit prior to examination
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No
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Automatic acceptance of credit before examination
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No
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Included in study average
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NO
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Language of instruction
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Czech
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Occ/max
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Automatic acceptance of credit before examination
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No
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Summer semester
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0 / -
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0 / -
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0 / -
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Included in study average
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NO
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Winter semester
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59 / -
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0 / -
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19 / -
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Repeated registration
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NO
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Repeated registration
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NO
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Timetable
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Yes
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Semester taught
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Winter semester
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Semester taught
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Winter semester
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Minimum (B + C) students
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10
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Optional course |
Yes
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Optional course
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Yes
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Language of instruction
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Czech
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Internship duration
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0
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No. of hours of on-premise lessons |
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Evaluation scale |
S|N |
Periodicity |
každý rok
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Periodicita upřesnění |
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Fundamental theoretical course |
Yes
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Fundamental course |
No
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Fundamental theoretical course |
Yes
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Evaluation scale |
S|N |
Substituted course
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None
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Preclusive courses
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N/A
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Prerequisite courses
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N/A
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Informally recommended courses
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KFY/TFYS1
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Courses depending on this Course
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N/A
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Histogram of students' grades over the years:
Graphic PNG
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XLS
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Course objectives:
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To introduce basic principles of quantum mechanics: their primary physical meaning, actual implementation through the mathematical relationships and their consequences for the properties of atoms, solids, atomic nuclei and elementary particles. To allow the students be able to apply these principles to problems or practical applications: combination with laboratory practicals. To give physical background for the studies of special disciplines.
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Requirements on student
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Credit: final summary test and solving of the problems and writing of reports in laboratory practicals.
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Content
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Quantum mechanics, properties of atoms, solids, atomic nuclei and elementary particles.
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Activities
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Fields of study
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Studentům jsou k dispozici webové stránky na Courseware se všemi podstatnými informacemi a materiály.
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Guarantors and lecturers
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Guarantors:
Doc. Mgr. Šimon Kos, Ph.D. ,
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Lecturer:
Doc. Mgr. Šimon Kos, Ph.D. (100%),
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Tutorial lecturer:
Ing. Anna Benediktová (100%),
Ing. Michal Kaufman, Ph.D. (100%),
Doc. Mgr. Šimon Kos, Ph.D. (100%),
Ing. Jiří Rezek, Ph.D. (100%),
Ing. Šárka Zuzjaková, Ph.D. (100%),
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Literature
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Recommended:
Fyzika : Celost. vysokošk. učebnice pro skupinu stud. oborů Strojírenství a ostatní kovodělná výroba. 1. vyd. Praha : SNTL, 1989. ISBN 80-03-00166-8.
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Recommended:
Halliday, David; Resnick, Robert; Walker, Jearl; Musilová, Jana; Obdržálek, Jan; Dub, Petr. Fyzika : vysokoškolská učebnice obecné fyziky. Část 1, Mechanika. Brno : VUTIUM, 2000. ISBN 80-214-1868-0.
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Recommended:
Halliday, David; Resnick, Robert; Walker, Jearl; Obdržálek, Jan; Dub, Petr. Fyzika : vysokoškolská učebnice obecné fyziky. Část 2, Mechanika - Termodynamika. Brno : VUTIM, 2000. ISBN 80-214-1868-0.
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Recommended:
Halliday, David; Resnick, Robert; Walker, Jearl; Štrunc, Marian; Obdržálek, Jan; Dub, Petr. Fyzika : vysokoškolská učebnice obecné fyziky. Část 3, Elektřina a magnetismus. Brno : VUTIM, 2000. ISBN 80-214-1868-0.
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Recommended:
Halliday, David; Resnik, Robert; Walker, Jearl; Komrska, Jiří; Obdržálek, Jan; Dub, Petr. Fyzika : vysokoškolská učebnice obecné fyziky. Část 4, Elektromagnetické vlny - Optika - Relativita. Brno : VUTIM, 2001. ISBN 80-214-1868-0.
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Recommended:
Halliday, David; Resnik, Robert; Walker, Jearl; Dub, Petr; Obdržálek, Jan; Lencová, Bohumila. Fyzika : vysokoškolská učebnice obecné fyziky. Část 5, Moderní fyzika. Brno : VUTIUM, 2000. ISBN 80-214-1868-0.
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Recommended:
Tölg, Tomáš. Fyzikální praktikum. 5. přeprac. vyd. Plzeň : Západočeská univerzita, 2002. ISBN 80-7082-851-X.
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Recommended:
Slavík, Jan. Řešené příklady z fyziky : 1. klasická fyzika. 3. vyd. Plzeň : ZČU, 1998. ISBN 80-7082-487-5.
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On-line library catalogues
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Time requirements
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All forms of study
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Activities
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Time requirements for activity [h]
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Preparation for comprehensive test (10-40)
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30
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Preparation for laboratory testing; outcome analysis (1-8)
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15
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Contact hours
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39
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Total
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84
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Prerequisites
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Knowledge - students are expected to possess the following knowledge before the course commences to finish it successfully: |
prokázat znalosti základů klasické mechaniky |
prokázat znalosti základů klasické elektrodynamiky |
prokázat znalosti základních veličin kmitů a vln |
Skills - students are expected to possess the following skills before the course commences to finish it successfully: |
vyřešit jednoduchou diferenciální rovnici |
provádět základní operace s komplexními čísly |
Competences - students are expected to possess the following competences before the course commences to finish it successfully: |
N/A |
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Learning outcomes
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Knowledge - knowledge resulting from the course: |
základů kvantové mechaniky a jejich důsledky pro vlastnosti atomů, pevných látek, atomových jader a elementárních částic |
základů matematického aparátu používaného v kvantové mechanice |
Skills - skills resulting from the course: |
matematicky vyjádřit a řešit jednoduché úlohy kvantové mechaniky a interpretovat výsledky |
aplikovat prostudované teorie v nových fyzikálních situacích |
pracovat v prostředí fyzikální laboratoře |
napsat jasný a výstižný laboratorní referát |
Competences - competences resulting from the course: |
N/A |
N/A |
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Assessment methods
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Knowledge - knowledge achieved by taking this course are verified by the following means: |
Test |
Individual presentation at a seminar |
Skills - skills achieved by taking this course are verified by the following means: |
Individual presentation at a seminar |
Competences - competence achieved by taking this course are verified by the following means: |
Test |
Individual presentation at a seminar |
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Teaching methods
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Knowledge - the following training methods are used to achieve the required knowledge: |
Lecture |
Laboratory work |
Skills - the following training methods are used to achieve the required skills: |
Lecture |
Laboratory work |
Competences - the following training methods are used to achieve the required competences: |
Lecture |
Self-study of literature |
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