Course detail
Structure and Properties of Inorganic Materials
FCH-MC_SVAMAcad. year: 2023/2024
Perfect and real crystal, interaction of electromagnetic waves with crystal, crystallochemistry, binding forces in solid state mater, noncrystalline materials, electrical, magnetical, optical, heat and mechanical properties of materials.
Language of instruction
Number of ECTS credits
Mode of study
Guarantor
Department
Entry knowledge
Rules for evaluation and completion of the course
Teaching is not checked during the semester.
Aims
Knowledge of structure, properties of ideal crystal and classification of crystalline structures.
Knowledge of the classification and nature of disturbances in the real crystal and their relation to the properties of the crystals.
Knowledge of structure, properties and formation of non-crystalline inorganic substances
Knowledge of binding forces in solids
Knowledge of electrical properties of solids and their relation to the structure.
Knowledge of magnetic properties of solids and their relation to the structure.
Knowledge of thermal and optical properties of solids and their relation to the structure.
Study aids
Prerequisites and corequisites
Basic literature
Kratochvíl B.: Chemie a fyzika pevných látek I. VŠCHT Praha, Praha 1994. (CS)
Recommended reading
Kraus I.: Struktura a vlastnosti krystalů. Academia, Praha 1993. (CS)
Elearning
Classification of course in study plans
- Programme NKCP_CHTM Master's 1 year of study, winter semester, compulsory
- Programme NPCP_CHTM Master's 1 year of study, winter semester, compulsory
- Programme NPCP_CHTMS Master's
specialization --- , 1 year of study, winter semester, compulsory
specialization --- , 1 year of study, winter semester, compulsory
Type of course unit
Lecture
Teacher / Lecturer
Syllabus
2. Interaction of electromagnetical waves with crystal
3. Crystallochemistry
4. Real crystal
5. Binding forces in solids
6. Noncrystalline materials
7. Electric properties of materials - conductors
8. Electric properties of materials - semiconductors
9. Electric properties of materials - nonconductors and superconductors
10. Magnetic properties of materials
11. Optical properties of materials
12. Heat properties of materials
9. Magnetical properties of materials
10. Optical properties of materials
11. Heat and mechanical properties of materials
12. Selected techniques of study of inorganic materials: X-ray, electron and neutron difraction
13. Selected techniques of study of inorganic materials: light microscopy and electron transmition microscopy
14. Selected techniques of study of inorganic materials: electron microscopy - scaning, emission and ion
Guided consultation in combined form of studies
Teacher / Lecturer
Elearning