|
Lecturer(s)
|
-
Ponížil Petr, prof. RNDr. Ph.D.
|
|
Course content
|
- Bonds. - Forms of solids. - Crystallography. - X-ray diffraction methods. - Crystal lattice disorders. - Heat capacity. - Thermal expansion. - Phonons. - Dielectric properties. - Polarizability. - Optical properties of dielectrics. - Electrical conductivity of metals. - Hall effect. - Thermal conductivity of metals and electron emission.
|
|
Learning activities and teaching methods
|
Lecturing, Activating (Simulation, games, dramatization)
- Preparation for course credit
- 90 hours per semester
|
| prerequisite |
|---|
| Knowledge |
|---|
| Fundamental knowledge of mathematics and physics. |
| Fundamental knowledge of mathematics and physics. |
| learning outcomes |
|---|
| describe the differences between crystallographic systems |
| describe the differences between crystallographic systems |
| explain Bragg's condition |
| explain Bragg's condition |
| sort crystal lattice defects |
| sort crystal lattice defects |
| describe the mechanisms of mopatization |
| describe the mechanisms of mopatization |
| explain the properties of metals |
| explain the properties of metals |
| Skills |
|---|
| apply the powder X-ray diffraction method |
| apply the powder X-ray diffraction method |
| analyse the powder diffraction diffractogram |
| analyse the powder diffraction diffractogram |
| calculate the specific heat capacity of the elements |
| calculate the specific heat capacity of the elements |
| measure the specific heat capacity of substances |
| measure the specific heat capacity of substances |
| determine from the Hall effect the concentration of charge carriers |
| determine from the Hall effect the concentration of charge carriers |
| teaching methods |
|---|
| Knowledge |
|---|
| Lecturing |
| Lecturing |
| Educational trip |
| Educational trip |
| Practice exercises |
| Practice exercises |
| Skills |
|---|
| Educational trip |
| Practice exercises |
| Educational trip |
| Practice exercises |
| Dialogic (Discussion, conversation, brainstorming) |
| Dialogic (Discussion, conversation, brainstorming) |
| assessment methods |
|---|
| Knowledge |
|---|
| Analysis of works made by the student (Technical products) |
| Analysis of works made by the student (Technical products) |
| Didactic test |
| Didactic test |
|
Recommended literature
|
-
Girvin, S.M. Yang, K. Modern Condensed Matter Physics. Cambridge University Press, 2019. ISBN 978-1107137394.
-
GROSSO, G., PARRAVICINI, G.P. Solid State Physics. Elsevier, 2013. ISBN 978-0123850300.
-
Janáček, Z., Ponížil, P. Úvod do fyziky pevných látek. Brno : PC- DIR, 1995. ISBN 80-214-0700-X.
-
Kittel, Charles. Introduction to Solid State Physics. John Wiley And Sons Ltd, 2004. ISBN 9780471415268.
-
SIMON, S.H. The Oxford Solid State Basics. Oxford Press, 2013. ISBN 978-0199680771.
|