? VSEPR theory in detail (with more than 4 ligands);
? Inorganic stereochemistry, isomerism in complexes;
? Solid state structures (metals, NaCl, CsCl) and Bragg’s law;
? Relation of equilibrium constants, electromotive force and standard Gibbs energy;
? Integrated rate law for first order reactions, half-life, Arrhenius equation,
determination of activation energy;
? Analysis of complex reactions using steady-state and quasi-equilibrium
approximations, mechanisms of catalytic reactions, determination of reaction order
and activation energy for complex reactions;
? Collision theory
? Simple phase diagrams and the Clausius-Clapeyron equation, triple and critical points;
? Stereoselective transformations (diastereoselective, enantioselective), optical purity
? Conformational analysis, use of Newman projections, anomeric effect
? Aromatic nucleophilic substitution, electrophilic substitution on polycyclic aromatic
compounds and heterocycles
? Supramolecular chemistry
? Advanced polymers, rubbers, copolymers, thermosetting polymers. Polymerization
types, stages and kinetics of polymerization;
? Amino acid side groups, reactions and separation of amino acids, protein sequencing;
? Secondary, tertiary and quaternary structures of proteins, non-covalent interactions,
stability and denaturation, protein purification by precipitation, chromatography and
electrophoresis;
? Enzymes and classification according to reaction types, active sites, coenzymes and
cofactors, mechanism of catalysis;
? Monosaccharides, equilibrium between linear and cyclic forms, pyranoses and
furanoses, Haworth projection and conformational formulae;
? Chemistry of carbohydrates, oligo and polysaccharides, glycosides, determination of
structure;
? Bases, nucleotides and nucleosides with formulae, Functional nucleotides, DNA and
RNA, hydrogen bonding between bases, replication, transcription and translation,
DNA based applications;
? Complex solubility calculations (with hydrolysing anions, complex formation);
? Simple Schr?dinger equations and spectroscopic calculations;
? Simple MO theory;
? Basics of mass spectrometry (molecular ions, isotope distributions);
? Interpretation of simple NMR spectra (chemical shift, multiplicity, integrals);
? Synthesis techniques: filtrations, drying of precipitates, thin layer chromatography.
? Synthesis in microscale equipment,;
? Advanced inorganic qualitative analysis;
? Gravimetric analysis;
? Use of a spectrophotometer;
? Theory and practice of extraction with immiscible solvents;
? Column chromatography;
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