480-2042/01 – Physics II Practical Exercises (LCFII)
Gurantor department | Department of Physics | Credits | 2 |
Subject guarantor | Mgr. Radim Uhlář, Ph.D. | Subject version guarantor | Mgr. Radim Uhlář, Ph.D. |
Study level | undergraduate or graduate | Requirement | Choice-compulsory type B |
Year | 2 | Semester | summer |
| | Study language | Czech |
Year of introduction | 2018/2019 | Year of cancellation | |
Intended for the faculties | FS, USP, FMT, FEI | Intended for study types | Bachelor |
Subject aims expressed by acquired skills and competences
Summarize the basic principles of the theory of physical measurement and the measurement uncertainty.
Describe and explain the physical laws that are the basis of individual measurement methods.
Apply measurement methods and the theory of uncertainty in the practical measurement of physical quantities in the field of electromagnetic field.
Teaching methods
Experimental work in labs
Summary
The practicals follow the theoretical subjects called Physics II, devoted to electromagnetic field, and supply the basic practical exercises. Not only the measurement realization itself, but also its correct processing and evaluation is emphasized.
Compulsory literature:
Recommended literature:
HALLIDAY, D., RESNICK, R. WALKER, J.: Fundamentals of
Physics, John Wiley and Sons, Inc. 1997.
Way of continuous check of knowledge in the course of semester
Check of the students preparation to exercises - in writing and orally.
Control of measurement processing - laboratory diary.
Evaluation of the submitted report.
E-learning
lms.vsb.cz
Other requirements
Regular off-class preparation to lessons, elaborating the reports.
Prerequisities
Subject has no prerequisities.
Co-requisities
Subject has no co-requisities.
Subject syllabus:
1. Introduction to the methodology of performing individual experimental tasks.
2. Cyclic measurement of the following tasks:
- Measurement of electromotive voltage of a galvanic cell by the compensation method
- Measurement of the specific charge of the electron from the radius of its trajectory in the magnetic field.
- Measurement of the dielectric permittivity of fluid by AC bridge.
- Measurement of resonance characteristics of a serial RLC circuit.
- Induced voltage measurement depending on the position of the secondary coil.
- Measurement of carrier mobility using the Hall probe.
- Measurement of the temperature dependence of the resistance of the resistor.
- Measurement of the bandgap from the temperature dependence of the semiconductor resistance.
- Measurement of the VA characteristic of the semiconductor diode.
- Measurement of transistor characteristics.
Conditions for subject completion
Occurrence in study plans
Occurrence in special blocks
Assessment of instruction