1. Chemical nomenclature. Basic terms. Calculation of the mixture composition. Atom structure.
2. Stoichiometric calculations. Mass balance of the simple system. Electron configuration. Chemical bonding.
3. Periodic table patterns. States of matter. Phase diagram of one-component system. Ideal gas laws.
4. Chemical reactions. Chemical kinetics.
5. Energetic changes at chemical reactions. Chemical equilibrium.
6. Acid-base reactions in solutions and melts. Oxidation-reduction reactions.
7. Electrochemical series of potentials. Galvanic cells. Electrolysis.
8. Properties and production of metals. Corrosion. Hydrogen and oxygen depolarisation
9. Hydrogen, oxygen, water.
10. s1 and s2 elements – general properties. Sodium, potassium, magnesium, calcium.
11. p1, p2, p3 elements - general properties. Aluminium, carbon, silica, tin, lead, nitrogen, phosphorus.
12. p4, p5, p6 elements - general properties. Sulphur, fluorine, chlorine.
13. d elements. Transition metals complexes, structure, bonding, spectroscopic and magnetic properties. Coordination equilibria and reaction mechanisms.
14. Titanium, zirconium, chromium, molybdenum, tungsten, manganese, iron, zinc, mercury, copper, silver, gold.
2. Stoichiometric calculations. Mass balance of the simple system. Electron configuration. Chemical bonding.
3. Periodic table patterns. States of matter. Phase diagram of one-component system. Ideal gas laws.
4. Chemical reactions. Chemical kinetics.
5. Energetic changes at chemical reactions. Chemical equilibrium.
6. Acid-base reactions in solutions and melts. Oxidation-reduction reactions.
7. Electrochemical series of potentials. Galvanic cells. Electrolysis.
8. Properties and production of metals. Corrosion. Hydrogen and oxygen depolarisation
9. Hydrogen, oxygen, water.
10. s1 and s2 elements – general properties. Sodium, potassium, magnesium, calcium.
11. p1, p2, p3 elements - general properties. Aluminium, carbon, silica, tin, lead, nitrogen, phosphorus.
12. p4, p5, p6 elements - general properties. Sulphur, fluorine, chlorine.
13. d elements. Transition metals complexes, structure, bonding, spectroscopic and magnetic properties. Coordination equilibria and reaction mechanisms.
14. Titanium, zirconium, chromium, molybdenum, tungsten, manganese, iron, zinc, mercury, copper, silver, gold.