AIEEE Chemistry Syllabus
SECTION - A : PHYSICAL CHEMISTRY |
Unit 1: Some Basic Concepts in Chemistry |
Matter and its nature, Dalton's atomic theory; Concept of atom, molecule, element and compound; Physical quantities and their measurements in Chemistry, precision and accuracy, significant figures, S.I. Units, dimensional analysis; Laws of chemical combination; Atomic and molecular masses, mole concept, molar mass, percentage composition, empirical and molecular formulae; Chemical equations and stoichiometry. |
Unit 2: States of Matter |
Classification of matter into solid, liquid and gaseous states. |
Unit 3: Atomic Structure |
Discovery of sub-atomic particles (electron, proton and neutron); Thomson and Rutherford atomic models and their limitations; Nature of electromagnetic radiation, photoelectric effect; Spectrum of hydrogen atom, Bohr model of hydrogen atom - its postulates, derivation of the relations for energy of the electron and radii of the different orbits, limitations of Bohr's model; Dual nature of matter, de-Broglie's relationship, Heisenberg uncertainty principle. Elementary ideas of quantum mechanics, quantum mechanical model of atom, its important features, * and *2, concept of atomic orbitals as one electron wave functions; Variation of * and * 2 with r for 1s and 2s orbitals; various quantum numbers (principal, angular momentum and magnetic quantum numbers) and their significance; shapes of s, p and d - orbitals, electron spin and spin quantum number; Rules for filling electrons in orbitals – aufbau principle, Pauli's exclusion principle and Hund's rule, electronic configuration of elements, extra stability of half-filled and completely filled orbitals. |
Unit 4: Chemical Bonding and Molecular Structure |
Kossel - Lewis approach to chemical bond formation, concept of ionic and covalent bonds. |
Unit 5: Chemical Thermodynamics |
Fundamentals of thermodynamics : System and surroundings, extensive and intensive properties, state functions, types of processes. |
Unit 6: Solutions |
Different methods for expressing concentration of solution - molality, molarity, mole fraction, percentage (by volume and mass both), vapour pressure of solutions and Raoult's Law - Ideal and non-ideal solutions, vapour pressure - composition, plots for ideal and non-ideal solutions; Colligative properties of dilute solutions - relative lowering of vapour pressure, depression of freezing point, elevation of boiling point and osmotic pressure; Determination of molecular mass using colligative properties; Abnormal value of molar mass, van't Hoff factor and its significance. |
Unit 7: Equilibrium |
Meaning of equilibrium, concept of dynamic equilibrium. Equilibria involving physical processes: Solid -liquid, liquid - gas and solid - gas equilibria, Henry's law, general characterics of equilibrium involving physical processes. |
Unit 8: Redox Reactions & Electrochemistry |
Electronic concepts of oxidation and reduction, redox reactions, oxidation number, rules for assigning oxidation number, balancing of redox reactions. |
Unit 9: Chemical Kinetics |
Rate of a chemical reaction, factors affecting the rate of reactions: concentration, temperature, pressure and catalyst; elementary and complex reactions, order and molecularity of reactions, rate law, rate constant and its units, differential and integral forms of zero and first order reactions, their characteristics and half - lives, effect of temperature on rate of reactions - Arrhenius theory, activation energy and its calculation, collision theory of bimolecular gaseous reactions (no derivation). |
Unit 10: Surface Chemistry |
Adsorption: Physisorption and chemisorption and their characteristics, factors affecting adsorption of gases on solids- Freundlich and Langmuir adsorption isotherms, adsorption from solutions. |
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SECTION - B : INORGANIC CHEMISTRY |
Unit 11: Classification of Elements & Periodicity in Properties |
Modem periodic law and present form of the periodic table, s, p, d and f block elements, periodic trends in properties of elements atomic and ionic radii, ionization enthalpy, electron gain enthalpy, valence, oxidation states and chemical reactivity. |
Unit 12: General Principles & Processes of Isolation of Metals |
Modes of occurrence of elements in nature, minerals, ores; steps involved in the extraction of metals - concentration, reduction (chemical. and electrolytic methods) and refining with special reference to the extraction of Al, Cu, Zn and Fe; Thermodynamic and electrochemical principles involved in the extraction of metals. |
Unit 13: Hydrogen |
Position of hydrogen in periodic table, isotopes, preparation, properties and uses of hydrogen; Physical and chemical properties of water and heavy water; Structure, preparation, reactions and uses of hydrogen peroxide; Classification of hydrides - ionic, covalent and interstitial; Hydrogen as a fuel. |
Unit 14: s - Block Elements (Alkali & Alkaline Earth Metals) |
Group - 1 and 2 Elements |
Unit 15: p - Block Elements |
Group - 13 to Group 18 Elements |
Unit 16: d & f - Block Elements |
Transition Elements |
Unit 17: Co-ordination Compounds |
Introduction to co-ordination compounds, Werner's theory; ligands, co-ordination number, denticity, chelation; IUPAC nomenclature of mononuclear co-ordination compounds, isomerism; Bonding-Valence bond approach and basic ideas of Crystal field theory, colour and magnetic properties; Importance of co-ordination compounds (in qualitative analysis, extraction of metals and in biological systems). |
Unit 18: Environmental Chemistry |
Environmental pollution: Atmospheric, water and soil. |
SECTION - C : ORGANIC CHEMISTRY |
Unit 19: Purification and Characterisation of Organic Compounds |
Purification: Crystallization, sublimation, distillation, differential extraction and chromatography - principles and their applications. |
Unit 20: Some Basic Principles of Organic Chemistry |
Tetravalency of carbon; Shapes of simple molecules - hybridization (s and p); Classification of organic compounds based on functional groups: - C = C - , - C ? C - and those containing halogens, oxygen, nitrogen and sulphur; Homologous series; Isomerism - structural and stereoisomerism. |
Unit 21: Hydrocarbons |
Classification, isomerism, IUPAC nomenclature, general methods of preparation, properties and reactions. |
Unit 22: Organic Compounds Containing Halogens |
General methods of preparation, properties and reactions; Nature of C-X bond; Mechanisms of substitution reactions. |
Unit 23: Organic compounds containing Oxygen |
General methods of preparation, properties, reactions and uses. |
Unit 24: Organic Compounds Containing Nitrogen |
General methods of preparation, properties, reactions and uses. |
Unit 25: Polymers |
General introduction and classification of polymers, general methods of polymerization - addition and condensation, copolymerization; Natural and synthetic rubber and vulcanization; some important polymers with emphasis on their monomers and uses - polythene, nylon, polyester and bakelite. |
Unit 26: Bio Molecules |
General introduction and importance of biomolecules. |
Unit 27: Chemistry in everyday life |
Chemicals in medicines: Analgesics, tranquilizers, antiseptics, disinfectants, antimicrobials, antifertility drugs, antibiotics, antacids, antihistamins - their meaning and common examples. |
Unit 27: Principles related to practical Chemistry |
Chemical principles involved in the following experiments: |