Lecturer(s)
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Ponížil Petr, prof. RNDr. Ph.D.
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Course content
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- Bonds, forms of solids. - Crystallography, crystal lattice disorders. - X-ray diffraction methods. - Thermal properties of solids, phonons - Dielectric properties. - Electrons in metals. - Band structure. - Intrinsic semiconductors. - Admixture semiconductors, p-n transition. - Superconductivity. - High temperature superconductors. - Distribution of magnetic properties of substances. - Atomic description of magnetism. - More complex magnetic structures.
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Learning activities and teaching methods
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Lecturing, Dialogic (Discussion, conversation, brainstorming), Practice exercises
- Preparation for examination
- 60 hours per semester
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learning outcomes |
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Knowledge |
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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 |
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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 |
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Knowledge |
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Lecturing |
Lecturing |
Dialogic (Discussion, conversation, brainstorming) |
Dialogic (Discussion, conversation, brainstorming) |
Skills |
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Practice exercises |
Practice exercises |
Demonstration |
Demonstration |
assessment methods |
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Knowledge |
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Didactic test |
Oral examination |
Grade (Using a grade system) |
Oral examination |
Didactic test |
Grade (Using a grade system) |
Recommended literature
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GROSSO, G., PARRAVICINI, G.P. Solid State Physics. Elsevier, 2013. ISBN 978-0123850300.
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Janáček, Z., Ponížil, P. Úvod do fyziky pevných látek. Brno : PC- DIR, 1995. ISBN 80-214-0700-X.
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SIMON, S.H. The Oxford Solid State Basics. Oxford Press, 2013. ISBN 978-0199680771.
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