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Teaching PowerPoint


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Chapter 10
10.1 Occurrence and uses of metals
10.2 Extraction of metals from their ores
10.3 Relating the discovery of metals with the ease of extraction of metals
10.4 Conserving metals
10.1 Occurrence and uses of metals (bilingual version)
10.2 Extraction of metals from their ores (bilingual version)
10.3 Relating the discovery of metals with the ease of extraction of metals (bilingual version)
10.4 Conserving metals (bilingual version)
Occurrence and extraction of metals (combined version)
Occurrence and extraction of metals (bilingual, combined version)
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Chapter 11
11.1 Reactions of metals with oxygen
11.2 Reactions of metals with water
11.3 Reactions of metals with dilute hydrochloric acid and dilute sulphuric acid
11.4 Metal reactivity series and the tendency of metals to form positive ions
11.5 Relating the extraction method of a metal to its position in the metal reactivity series
11.6 Writing chemical equations
11.7 Displacement reactions of metals
11.8 Writing ionic equations
11.1 Reactions of metals with oxygen (bilingual version)
11.2 Reactions of metals with water (bilingual version)
11.3 Reactions of metals with dilute hydrochloric acid and dilute sulphuric acid (bilingual version)
11.4 Metal reactivity series and the tendency of metals to form positive ions (bilingual version)
11.5 Relating the extraction method of a metal to its position in the metal reactivity series (bilingual version)
11.6 Writing chemical equations (bilingual version)
11.7 Displacement reactions of metals (bilingual version)
11.8 Writing ionic equations (bilingual version)
Reactivity of metals (combined version)
Reactivity of metals (bilingual, combined version)
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Chapter 12
12.1 The mole and Avogadro constant
12.2 The mole and molar mass
12.3 Calculating percentage by mass of an element in a compound
12.4 Calculating the mass of an element in a compound
12.5 Calculating the relative atomic mass of an element
12.6 Determining empirical formulae from experimental data
12.7 Determining molecular formulae from experimental data
12.8 Reacting masses from chemical equations
12.1 The mole and Avogadro constant (bilingual version)
12.2 The mole and molar mass (bilingual version)
12.3 Calculating percentage by mass of an element in a compound (bilingual version)
12.4 Calculating the mass of an element in a compound (bilingual version)
12.5 Calculating the relative atomic mass of an element (bilingual version)
12.6 Determining empirical formulae from experimental data (bilingual version)
12.7 Determining molecular formulae from experimental data (bilingual version)
12.8 Reacting masses from chemical equations (bilingual version)
Reacting masses (combined version)
Reacting masses (bilingual, combined version)
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Chapter 13
13.1 Corrosion of metals
13.2 Corrosion of iron — rusting
13.3 Investigating rusting of iron using rust indicator
13.4 Factors that speed up rusting
13.5 Socio-economic implications of rusting
13.6 Methods used to protect iron from rusting
13.7 Corrosion resistance of aluminium
13.1 Corrosion of metals (bilingual version)
13.2 Corrosion of iron — rusting (bilingual version)
13.3 Investigating rusting of iron using rust indicator (bilingual version)
13.4 Factors that speed up rusting (bilingual version)
13.5 Socio-economic implications of rusting (bilingual version)
13.6 Methods used to protect iron from rusting (bilingual version)
13.7 Corrosion resistance of aluminium (bilingual version)
Corrosion of metals and their protection (combined version)
Corrosion of metals and their protection (bilingual, combined version)