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O-Level Chemistry - CIE

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1.States of matter 2.Atoms, elements and compounds 3.Stoichiometry 4.Electrochemistry 5.Chemical energetics 6.Chemical reactions 7.Acids, bases and salts 8.The Periodic Table 9.Metals 10.Chemistry of the environment 11.Organic chemistry 12.Experimental techniques and chemical analysis

A-Level Chemistry - CIE

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Year 1
Section 1 - Physical Chemistry 1 - Atomic Structure 1.1 - The Structure of an Atom and Numbers of Nucleons 1.2 - Isotopes and Masses of Atoms 1.3 - Electronic Structure and Electronic Configurations 1.4 - Mass Spectrometry 2 - Atoms, Molecules and Stoichiometry 2.1 - Masses of Molecules and Amount of Substance 2.2 - Reacting Masses and the Stochiometry of a Reaction 2.3 - Percentage Yield 2.4 - Empirical and Molecular Formulae 2.5 - Balancing Chemical Equations 2.6 - Solutions and Concentration 2.7 - Calculations Involving Gas Volumes 3 - Chemical Bonding 3.1 - Ionic Bonding 3.2 - Covalent Bonding and Simple Molecular Structures 3.3 - Shapes of Molecules 3.4 - Sigma Bonds and Pi Bonds 3.5 - Metallic Bonding 3.6 - Electronegativity and Polarity in Molecules 3.7 - Intermolecular Forces 3.8 - Giant Molecular Structures and Fullerenes 4 - States of Matter 4.1 - The Gaseous State 4.2 - Bonding and Physical Properties 5 - Chemical Energetics 5.1 - Enthalpy Changes 5.2 - Measuring Enthalpy Changes 5.3 - Hess' Law 5.4 - Bond Energies and Enthalpy Changes 6 - Electrochemistry 6.1 - Oxidation Numbers 6.2 - Redox 6.3 - Redox Equations 7 - Equilibria 7.1 - Reversible Reactions and Equilibrium 7.2 - Changing the Position of Equilibrium 7.3 - Equilibrum Expressions and the Equilibrium Constant, Kc 7.4 - Equilibria in Gas Reactions: The Equilibrium Constant, Kp 7.5 - Acid-Base Equilibria 7.6 - Acid-Base Titrations 8 - Reaction Kinetics 8.1 - Rate of Reaction 8.2 - The Effect of Temperature on Rate of Reaction 8.3 - Catalysis Section 2 - Inorganic Chemistry 9 - The Periodic Table: Chemical Periodicity 9.1 - Structure of the Periodic Table 9.2 - Periodicity of Physical and Chemical Properties 9.3 - Ionisation Energies 9.4 - Oxides of Period 3 Elements 9.5 - Chlorides of Period 3 Elements 10 - Group 2 10.1 - Physical Properties and Reactions of Group 2 Elements 10.2 - Reactions of Group 2 Compounds 11 - Group 17 11.1 - Physical Properties of Group 17 Elements 11.2 - Reactions of Group 17 Elements 11.3 - Reactions of the Halide Ions 11.4 - The Reactions of Chlorine 11.5 - Qualitative Analysis of Anions 12 - Nitrogen and Sulfur 12.1 - Nitrogen Gas, Ammonia and Ammonium Compounds 12.2 - Nitrogen Oxides in the Atmosphere Section 3 - Organic Chemistry 13 - An Introduction to AS Level Organic Chemistry 13.1 - Representing Organic Molecules 13.2 - Homologous Series of Organic Molecules 13.3 - Naming Organic Compounds 13.4 - Bonding in Organic Molecules 13.5 - Isomerism 13.6 - Types of Organic Reaction & Reaction Mechanism 14 - Hydrocarbons 14.1 - The Homologous Group of Alkanes 14.2 - Cracking of Alkanes 14.3 - Combustion of Alkanes 14.4 - Substitution Reactions of Alkanes 14.5 - The Alkenes 14.6 - Addition Reactions of the Alkenes 14.7 - Oxidation of the Alkenes 15 - Halogen Compounds 15.1 - Making Halogenoalkanes 15.2 - Nucleophilic Substitution Reactions in Halogenoalkanes 15.3 - Elimination Reactions 16 - Hydroxy Compounds 16.1 - The Homologous Series of Alcohols 16.2 - Reactions of the Alcohols 17 - Carbonyl Compounds 17.1 - The Homologous Series of Aldehydes & Ketones 17.2 - Reactions of Aldehydes & Ketones 17.3 - Testing for Aldehydes & Ketones 18 - Carboxylic Acids and Derivatives 18.1 - Carboxylic Acids 18.2 - Esters 19 - Nitrogen Compounds 19.1 - Primary Amines, Nitriles & Hydroxynitriles 20 - Polymerisation 20.1 - Addition Polymerisation 21 - Organic Synthesis 21.1 - Synthetic Routes Section 4 - Analysis 22 - Analytical Techniques 22.1 - Mass Spectrometry 22.2 - Infrared Spectroscopy
Year 2
Section 1 - Physical Chemistry 23 - Chemical Energetics 23.1 - Lattice Energy 23.2 - Born-Haber Cycles 23.3 - Enthalpies of Solution and Hydration 23.4 - Entropy Change 23.5 - Gibbs Free Energy Change 24 - Electrochemistry 24.1 - Electrode Potentials 24.2 - Using E⦵ Values 24.3 - Electrolysis 25 - Equilibria 25.1 - Conjugate Acids and Conjugate Bases 25.2 - pH Calculations 25.3 - Weak Acids: Using the Acid Dissociation Constant, Ka 25.4 - Buffer Solutions 25.5 - Equilibrium and Solubility 25.6 - Partition Coefficients 26 - Reaction Kinetics 26.1 - Rate Equations and Orders of Reaction 26.2 - Calculations Involving the Rate Equation 26.3 - Kinetics and Reaction Mechanism 26.4 - Catalysis Section 2 - Inorganic Chemistry 27 - Group 2 27.1 - Similarities and Trends in Properties of Group 2 Compounds 28 - Chemistry of Transition Elements 28.1 - What is a Transition Element? 28.2 - Chemical Properties of the Transition Elements 28.3 - Redox Titrations 28.4 - Ligands and Complex Formation 28.5 - Stereoisomerism in Transition Metal Complexes 28.6 - Substitution of Ligands 28.7 - Stability Constants 28.8 - The Colour of Complexes 28.9 - Qualitative Analyis of Cations Section 3 - Organic Chemistry 29 - An Introduction to A Level Organic Chemistry 29.1 - Naming Organic Compounds 29.2 - Optical Isomerism 30 - Hydrocarbons 30.1 - The Benzene Ring 30.2 - Reactions of Arenes 31 - Halogen Compounds 31.1 - Halogen Compounds 32 - Hydroxy Compounds 32.1 - Alcohols 32.2 - Phenol 32.3 - Directing Effects 33 - Carboxylic Acids and Derivatives 33.1 - Carboxylic Acids 33.2 - Acyl Chlorides 34 - Nitrogen Compounds 34.1 - Amines 34.2 - Formation of Amines 34.3 - Phenylamine & Azo Compounds 34.4 - Amino Acids 34.5 - Peptides & Electrophoresis 34.6 - Reactions of the Amides 35 - Polymerisation 35.1 - Condensation Polymerisation 35.2 - Degradable Polymers 36 - Organic Synthesis 36.1 - Synthetic Routes Section 4 - Analysis 37 - Analytical Techniques 37.1 - Qualitative Analysis of Functional Groups 37.2 - Chromatography 37.3 - Proton Nuclear Magnetic Resonance 37.4 - Carbon-13 NMR Spectroscopy