Pearson Chemistry 11 New South Wales Student Book
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Preliminary pages Writing and development team Contents How to use this book Pearson Chemistry 11 New South Wales Working scientifically Chapter 1 Working scientifically 1.1 Questioning and predicting 1.2 Planning investigations 1.3 Conducting investigations 1.4 Processing data and information 1.5 Analysing data and information 1.6 Problem solving 1.7 Communicating Chapter 1 review Module 1 Properties and structure of matter Chapter 2 Properties of matter 2.1 Types of matter 2.2 Physical properties and changes of state 2.3 Separating mixtures 2.4 Calculating percentage composition 2.5 Elements and the periodic table Chapter 2 review Chapter 3 Atomic structure and atomic mass 3.1 Inside atoms 3.2 Classifying atoms 3.3 Masses of particles 3.4 Electronic structure of atoms 3.5 Electronic configuration and the shell model 3.6 The Schrödinger model of the atom Chapter 3 review Chapter 4 Periodicity 4.1 The periodic table 4.2 Trends in the periodic table: Part 1 4.3 Trends in the periodic table: Part 2 Chapter 4 review Chapter 5 Bonding 5.1 Metallic bonding 5.2 Ionic bonding 5.3 Covalent bonding 5.4 Intermolecular forces 5.5 Covalent network structures Chapter 5 review Module 1 review Module 2 Introduction to quantitative chemistry Chapter 6 Chemical reactions and stoichiometry 6.1 Writing chemical equations 6.2 Problems involving conservation of mass Chapter 6 review Chapter 7 The mole concept 7.1 Introducing the mole 7.2 Molar mass 7.3 Percentage composition and empirical formula 7.4 Calculations based on the amount of a reactant or product 7.5 Calculations based on the amounts of two reactants Chapter 7 review Chapter 8 Concentration and molarity 8.1 Concentration of solutions 8.2 Molar concentration 8.3 Dilution 8.4 Standard solutions Chapter 8 review Chapter 9 Gas laws 9.1 Introducing gases 9.2 The gas laws 9.3 The ideal gas law 9.4 Stoichiometric calculations involving gases Chapter 9 review Module 2 review Module 3 Reactive chemistry Chapter 10 Chemical reactions 10.1 Chemical change 10.2 Synthesis reactions 10.3 Decomposition reactions 10.4 Combustion reactions 10.5 Precipitation reactions 10.6 Reactions of acids and bases 10.7 Removing toxins from food Chapter 10 review Chapter 11 Predicting reactions of metals 11.1 Reactions of metals 11.2 The activity series of metals 11.3 Metal activity and the periodic table Chapter 11 review Chapter 12 Redox reactions and galvanic cells 12.1 Introducing redox reactions 12.2 Oxidation numbers 12.3 Galvanic cells 12.4 The table of standard reduction potentials Chapter 12 review Chapter 13 Rates of reaction 13.1 Collision theory 13.2 Measuring reaction rate 13.3 Effect of surface area, concentration and pressure on reaction rate 13.4 Effect of temperature on reaction rate Chapter 13 review Module 3 review Module 4 Drivers of reactions Chapter 14 Energy changes in chemical reactions 14.1 Exothermic and endothermic reactions 14.2 Thermochemical equations and energy profile diagrams 14.3 Heat of combustion 14.4 Determining the heat of combustion 14.5 Enthalpy of dissolution 14.6 Catalysts Chapter 14 review Chapter 15 Enthalpy and Hess's law 15.1 Latent heat 15.2 Bond energy 15.3 Hess's law Chapter 15 review Chapter 16 Entropy and Gibbs free energy 16.1 Energy and entropy changes in chemical reactions 16.2 Entropy and spontaneous processes 16.3 Gibbs free energy Chapter 16 review Module 4 review Appendices Answers Glossary Index eBook credits
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