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| WK | LSN | STRAND | SUB-STRAND | LESSON LEARNING OUTCOMES | LEARNING EXPERIENCES | KEY INQUIRY QUESTIONS | LEARNING RESOURCES | ASSESSMENT METHODS | REFLECTION |
|---|---|---|---|---|---|---|---|---|---|
| 1 | 4 |
Inorganic Chemistry
|
Chemical Bonding - The covalent chemical bond
Chemical Bonding - Double and triple covalent bonds |
By the end of the
lesson, the learner
should be able to:
- Describe the formation of covalent bonds - Illustrate single covalent bonds using dot and cross diagrams - Connect covalent bonding to common molecules like water and oxygen |
In groups, learners are guided to:
- Discuss how atoms share electrons to form covalent bonds - Draw dot (.) and cross (x) diagrams for hydrogen and chlorine molecules - Use modelling clay to represent covalent bonding |
How do non-metal atoms bond with each other?
|
- Access & Learn Chemistry Learner's Book Grade 10 pg. 82
- Modelling clay - Wooden splints - Charts showing covalent bonds - Access & Learn Chemistry Learner's Book Grade 10 pg. 83 - Modelling materials - Charts of molecular structures |
- Written exercises
- Observation
- Oral questions
|
|
| 1 | 5 |
Inorganic Chemistry
|
Chemical Bonding - Covalent bonding in ammonia and hydrogen chloride
Chemical Bonding - Dative covalent (coordinate) bonding |
By the end of the
lesson, the learner
should be able to:
- Illustrate covalent bonding in ammonia and hydrogen chloride molecules - Identify lone pairs of electrons in molecules - Connect molecular compounds to household chemicals like cleaning ammonia |
In groups, learners are guided to:
- Draw dot (.) and cross (x) structures for ammonia and hydrogen chloride - Identify shared pairs and lone pairs in molecules - Discuss the shape of ammonia molecule |
What is the role of lone pairs in covalent molecules?
|
- Access & Learn Chemistry Learner's Book Grade 10 pg. 84
- Charts showing molecular structures - Digital devices - Access & Learn Chemistry Learner's Book Grade 10 pg. 85 - Charts showing dative bonds |
- Written exercises
- Observation
- Oral questions
|
|
| 2 | 1 |
Inorganic Chemistry
|
Chemical Bonding - Hydrogen bonding and Van der Waals forces
|
By the end of the
lesson, the learner
should be able to:
- Differentiate between intermolecular and intramolecular forces - Illustrate hydrogen bonding and Van der Waals forces - Connect intermolecular forces to properties of water like surface tension |
In groups, learners are guided to:
- Discuss types of intermolecular forces using print or digital materials - Illustrate hydrogen bonding in water molecules using models - Draw diagrams showing Van der Waals forces |
Why does water have a relatively high boiling point compared to other small molecules?
|
- Access & Learn Chemistry Learner's Book Grade 10 pg. 86
- Modelling materials - Digital devices |
- Written exercises
- Model assessment
- Oral questions
|
|
| 2 | 2 |
Inorganic Chemistry
|
Chemical Bonding - Melting, boiling points and conductivity of molecular substances
Chemical Bonding - Solubility and uses of molecular substances |
By the end of the
lesson, the learner
should be able to:
- Investigate melting and boiling points of molecular substances - Explain why molecular substances have low melting points - Relate molecular properties to everyday substances like sugar and wax |
In groups, learners are guided to:
- Carry out experiments to determine melting point of naphthalene - Investigate thermal and electrical conductivity of molecular substances - Compare properties with ionic compounds |
Why do molecular substances have low melting and boiling points?
|
- Access & Learn Chemistry Learner's Book Grade 10 pg. 89
- Naphthalene - Thermometer - Bunsen burner - Melting point tube - Access & Learn Chemistry Learner's Book Grade 10 pg. 92 - Sulphur powder - Sugar crystals - Distilled water - Ethanol |
- Practical report
- Written exercises
- Observation
|
|
| 2 | 3 |
Inorganic Chemistry
|
Chemical Bonding - Giant atomic structure of diamond
|
By the end of the
lesson, the learner
should be able to:
- Describe the giant atomic structure of diamond - Model the structure of diamond using locally available materials - Connect diamond's structure to its use in cutting tools and jewelry |
In groups, learners are guided to:
- Discuss the tetrahedral structure of diamond - Model a diamond structure using modelling clay and toothpicks - Relate structure to properties (hardness, non-conductivity) |
Why is diamond the hardest natural substance?
|
- Access & Learn Chemistry Learner's Book Grade 10 pg. 93
- Modelling clay - Toothpicks - Charts of diamond structure |
- Model assessment
- Written exercises
- Oral questions
|
|
| 2 | 4 |
Inorganic Chemistry
|
Chemical Bonding - Giant atomic structure of graphite
Chemical Bonding - Uses of diamond, graphite and silicon (IV) oxide |
By the end of the
lesson, the learner
should be able to:
- Describe the layered structure of graphite - Model the structure of graphite using locally available materials - Relate graphite structure to its use in pencils and lubricants |
In groups, learners are guided to:
- Discuss the hexagonal layered structure of graphite - Model a graphite structure showing layers - Explain why graphite conducts electricity while diamond does not |
Why can graphite conduct electricity while diamond cannot?
|
- Access & Learn Chemistry Learner's Book Grade 10 pg. 94
- Modelling clay - Toothpicks - Charts of graphite structure - Access & Learn Chemistry Learner's Book Grade 10 pg. 96 - Digital devices - Charts showing applications |
- Model assessment
- Written exercises
- Group discussions
|
|
| 2 | 5 |
Inorganic Chemistry
|
Chemical Bonding - Metallic bonding and delocalised electrons
Chemical Bonding - Physical properties of giant metallic structures |
By the end of the
lesson, the learner
should be able to:
- Describe the formation of metallic bonds - Illustrate the sea of delocalised electrons model - Relate metallic bonding to properties of metals used in wiring and construction |
In groups, learners are guided to:
- Discuss how metallic bonds form through electron delocalisation - Draw diagrams showing metallic bonding in sodium, magnesium and aluminium - Explain the concept of positive ions in a sea of electrons |
Why are metals good conductors of electricity and heat?
|
- Access & Learn Chemistry Learner's Book Grade 10 pg. 97
- Charts showing metallic bonding - Digital devices - Access & Learn Chemistry Learner's Book Grade 10 pg. 99 - Metal and wood pieces |
- Written exercises
- Oral questions
- Observation
|
|
| 3 | 1 |
Inorganic Chemistry
|
Chemical Bonding - Uses of metallic structures related to properties
Periodicity - Introduction to periodic properties |
By the end of the
lesson, the learner
should be able to:
- Outline uses of metallic structures - Relate uses of metals to their bond type and properties - Identify applications of metals in vehicles, buildings and electronics |
In groups, learners are guided to:
- Search for information on uses of metallic structures - Complete a table relating substances, bond types, properties and uses - Discuss uses of copper, aluminium and iron in daily life |
How does metallic bonding make metals suitable for electrical wiring?
|
- Access & Learn Chemistry Learner's Book Grade 10 pg. 101
- Digital devices - Samples of metal products - Access & Learn Chemistry Learner's Book Grade 10 pg. 104 - Periodic table charts - Digital devices |
- Written assignments
- Group presentations
- Oral questions
|
|
| 3 | 2 |
Inorganic Chemistry
|
Periodicity - Physical appearance and density of group I elements
Periodicity - Gradation in size of atoms and ions of group I elements Periodicity - Ionisation energy and electronegativity of group I elements |
By the end of the
lesson, the learner
should be able to:
- Describe the physical appearance of group I elements - Observe and record properties of sodium metal - Connect alkali metals to applications like sodium lamps in street lighting |
In groups, learners are guided to:
- Observe the colour of sodium metal stored under paraffin - Cut sodium metal and compare freshly cut surface to stored metal - Watch videos on properties of group I metals - Analyse densities of alkali metals |
Why are alkali metals stored under oil or paraffin?
|
- Access & Learn Chemistry Learner's Book Grade 10 pg. 106
- Sodium metal - Scalpel blade - Petri dish - Digital devices - Access & Learn Chemistry Learner's Book Grade 10 pg. 107 - Periodic table - Graph paper - Access & Learn Chemistry Learner's Book Grade 10 pg. 108 - Data tables |
- Observation
- Practical report
- Oral questions
|
|
| 3 | 3 |
Inorganic Chemistry
|
Periodicity - Melting, boiling points and electrical conductivity of group I elements
Periodicity - Reactions of group I elements with oxygen Periodicity - Reactions of group I elements with chlorine and cold water |
By the end of the
lesson, the learner
should be able to:
- Describe trends in melting and boiling points of group I elements - Investigate electrical conductivity of alkali metals - Relate conductivity to use of sodium in sodium-vapour lamps |
In groups, learners are guided to:
- Analyse data on melting and boiling points of group I elements - Set up apparatus to investigate electrical conductivity of lithium and sodium - Discuss the relationship between metallic bond strength and melting points |
Why do melting points decrease down group I elements?
|
- Access & Learn Chemistry Learner's Book Grade 10 pg. 110
- Connecting wires - Dry cells - Bulb - Sodium metal - Lithium metal - Access & Learn Chemistry Learner's Book Grade 10 pg. 112 - Gas jar of oxygen - Deflagrating spoon - Bunsen burner - Lithium and sodium metals - Litmus paper - Access & Learn Chemistry Learner's Book Grade 10 pg. 114 - Chlorine gas - Cold water - Beakers |
- Practical report
- Written exercises
- Observation
|
|
| 3 | 4 |
Inorganic Chemistry
|
Periodicity - Applications of group I elements
Periodicity - Appearance, atomic and ionic radii of group II elements Periodicity - Ionisation energy, melting and boiling points of group II elements |
By the end of the
lesson, the learner
should be able to:
- Outline applications of group I elements - Relate properties to specific uses - Identify uses in batteries, street lights, medicine and photography |
In groups, learners are guided to:
- Search for information on applications of group I elements using print or digital materials - Discuss uses of lithium in batteries, sodium in lamps, potassium in fertilizers - Create presentations on applications |
How are the properties of alkali metals utilised in modern technology?
|
- Access & Learn Chemistry Learner's Book Grade 10 pg. 117
- Digital devices - Reference materials - Access & Learn Chemistry Learner's Book Grade 10 pg. 118 - Magnesium ribbon - Calcium metal - Sandpaper - Periodic table - Access & Learn Chemistry Learner's Book Grade 10 pg. 121 - Graph paper - Data tables - Digital devices |
- Written assignments
- Group presentations
- Oral questions
|
|
| 3 | 5 |
Inorganic Chemistry
|
Periodicity - Reactions of group II elements with water, steam and oxygen
|
By the end of the
lesson, the learner
should be able to:
- Investigate reactions of magnesium and calcium with water and oxygen - Write balanced equations for the reactions - Relate magnesium's reaction with oxygen to its use in flares and fireworks |
In groups, learners are guided to:
- Investigate reactions of magnesium ribbon with cold water and steam - Investigate reaction of calcium with cold water - Burn magnesium and calcium in oxygen and test products - Collect and test gases produced |
Why does magnesium react slowly with cold water but vigorously with steam?
|
- Access & Learn Chemistry Learner's Book Grade 10 pg. 123
- Magnesium ribbon - Calcium metal - Gas jar of oxygen - Bunsen burner - Litmus paper |
- Practical report
- Written exercises
- Observation
|
|
| 4 | 1 |
Inorganic Chemistry
|
Periodicity - Reactions of group II elements with dilute acids and chlorine
Periodicity - Applications of group II elements |
By the end of the
lesson, the learner
should be able to:
- Investigate reactions of group II elements with dilute acids and chlorine - Write balanced equations for the reactions - Relate reactions to production of hydrogen gas for industrial uses |
In groups, learners are guided to:
- Investigate reactions of magnesium and calcium with dilute HCl, dilute H₂SO₄ and dilute HNO₃ - Test gases produced with burning splint - Investigate reactions with chlorine gas - Write chemical equations for all reactions |
Why does the reaction of calcium with dilute sulphuric acid stop quickly?
|
- Access & Learn Chemistry Learner's Book Grade 10 pg. 127
- Dilute acids - Magnesium ribbon - Calcium metal - Chlorine gas - Test tubes - Access & Learn Chemistry Learner's Book Grade 10 pg. 129 - Digital devices - Reference materials |
- Practical report
- Written exercises
- Observation
|
|
| 4 | 2 |
Inorganic Chemistry
|
Periodicity - Preparation of chlorine and physical properties of group VII elements
|
By the end of the
lesson, the learner
should be able to:
- Prepare chlorine gas in the laboratory - Describe physical properties of halogens - Relate chlorine's properties to its use in water treatment and disinfection |
In groups, learners are guided to:
- Set up apparatus to prepare chlorine gas from concentrated HCl and potassium manganate (VII) - Observe colour, smell and solubility of chlorine - Compare physical properties of fluorine, chlorine, bromine and iodine |
Why is chlorine collected by downward delivery?
|
- Access & Learn Chemistry Learner's Book Grade 10 pg. 131
- Concentrated HCl - Potassium manganate (VII) - Gas jars - Delivery tubes |
- Practical report
- Observation
- Written exercises
|
|
| 4 | 3 |
Inorganic Chemistry
|
Periodicity - Melting, boiling points and gradation in size of group VII elements
Periodicity - Reactions of group VII elements with water and metals |
By the end of the
lesson, the learner
should be able to:
- Describe trends in melting and boiling points of halogens - Describe trends in atomic and ionic radii of group VII elements - Relate physical states to intermolecular forces and room temperature applications |
In groups, learners are guided to:
- Analyse data on melting and boiling points of halogens - Plot graphs of melting and boiling points against atomic number - Analyse data on atomic and ionic radii - Discuss Van der Waals forces in halogens |
Why is iodine a solid while chlorine is a gas at room temperature?
|
- Access & Learn Chemistry Learner's Book Grade 10 pg. 135
- Graph paper - Data tables - Digital devices - Access & Learn Chemistry Learner's Book Grade 10 pg. 139 - Chlorine gas - Bromine water - Iodine crystals - Iron wool - Litmus paper |
- Data analysis
- Written exercises
- Oral questions
|
|
| 4 | 4 |
Inorganic Chemistry
|
Periodicity - Displacement reactions and bleaching action of chlorine
Periodicity - Applications of group VII elements |
By the end of the
lesson, the learner
should be able to:
- Investigate displacement reactions of halogens - Investigate the bleaching action of chlorine - Relate displacement reactions to water purification and textile bleaching |
In groups, learners are guided to:
- Bubble chlorine gas through solutions of potassium bromide and potassium iodide - Observe colour changes and identify products - Investigate bleaching action of chlorine on coloured cloth and flower petals - Write chemical equations for displacement reactions |
Why can chlorine displace bromine and iodine from their compounds?
|
- Access & Learn Chemistry Learner's Book Grade 10 pg. 142
- Potassium bromide solution - Potassium iodide solution - Chlorine gas - Coloured cloth - Flower petals - Access & Learn Chemistry Learner's Book Grade 10 pg. 147 - Digital devices - Reference materials |
- Practical report
- Written exercises
- Observation
|
|
| 4 | 5 |
Inorganic Chemistry
|
Periodicity - Physical properties and applications of noble gases
|
By the end of the
lesson, the learner
should be able to:
- Describe physical properties of noble gases - Outline applications of group VIII elements - Relate noble gas properties to uses in lighting, welding and medical imaging |
In groups, learners are guided to:
- Analyse data on atomic radii, ionisation energy, melting and boiling points of noble gases - Discuss why noble gases are unreactive - Search for information on uses of helium, neon and argon |
Why are noble gases called inert gases?
|
- Access & Learn Chemistry Learner's Book Grade 10 pg. 148
- Periodic table - Digital devices - Reference materials |
- Written exercises
- Oral questions
- Group discussions
|
|
| 5 | 1 |
Inorganic Chemistry
|
Periodicity - Atomic size, ionisation energy and electronegativity across period 3
Periodicity - Reactions of period 3 elements with oxygen and water |
By the end of the
lesson, the learner
should be able to:
- Describe trends in atomic size and ionisation energy across period 3 - Plot graphs showing trends across the period - Relate effective nuclear charge to changes in atomic properties |
In groups, learners are guided to:
- Draw atomic structures of period 3 elements - Analyse data on atomic radii and ionisation energies - Plot graphs of ionisation energy against atomic number - Discuss the role of effective nuclear charge |
Why does atomic radius decrease across period 3?
|
- Access & Learn Chemistry Learner's Book Grade 10 pg. 151
- Graph paper - Periodic table - Data tables - Access & Learn Chemistry Learner's Book Grade 10 pg. 155 - Sodium, magnesium, sulphur - Gas jar of oxygen - Bunsen burner - Litmus paper - Distilled water |
- Data analysis
- Written exercises
- Oral questions
|
|
| 5 | 2 |
Inorganic Chemistry
Physical Chemistry |
Periodicity - Reactions of period 3 elements with chlorine and dilute acids
Acids and Bases - Dissociation of acids in aqueous solutions |
By the end of the
lesson, the learner
should be able to:
- Investigate reactions of period 3 elements with chlorine and dilute acids - Write balanced equations for the reactions - Connect periodic trends to prediction of element behaviour in chemical reactions |
In groups, learners are guided to:
- Pass chlorine gas over heated sodium and magnesium - Investigate reactions of magnesium with dilute HCl, dilute H₂SO₄ and dilute HNO₃ - Test gases produced - Write chemical equations for all reactions - Summarise trends in chemical properties across period 3 |
How do the chemical properties of elements change across period 3?
|
- Access & Learn Chemistry Learner's Book Grade 10 pg. 158
- Chlorine gas - Dilute acids - Sodium, magnesium - Test tubes - Bunsen burner - Access & Learn Chemistry Learner's Book Grade 10 pg. 164 - Dilute hydrochloric acid - pH indicator paper - Digital resources |
- Practical report
- Written exercises
- Oral questions
|
|
| 5 | 3 |
Physical Chemistry
|
Acids and Bases - Dissociation of bases in aqueous solutions
Acids and Bases - Properties of acids Acids and Bases - Properties of bases |
By the end of the
lesson, the learner
should be able to:
- Explain dissociation of bases in water - Demonstrate dissociation of bases in aqueous solutions - Connect dissociation of bases to household cleaning products like soap and detergents |
In groups, learners are guided to:
- Carry out experiments to demonstrate dissociation of sodium hydroxide solution - Test solutions using litmus paper and phenolphthalein indicator - Record observations on release of hydroxide ions (OH⁻) |
What ions are released when bases dissolve in water?
|
- Access & Learn Chemistry Learner's Book Grade 10 pg. 166
- Sodium hydroxide solution - Phenolphthalein indicator - Red and blue litmus paper - Test tubes - Chemistry Learner's Book Grade 10 pg. 166 - Samples of acids - pH indicator paper - Blue litmus paper - Digital resources - Access & Learn Chemistry Learner's Book Grade 10 pg. 167 - Baking soda - Soap solution - Red litmus paper - Phenolphthalein |
- Practical assessment
- Oral questions
- Written exercises
|
|
| 5 | 4 |
Physical Chemistry
|
Acids and Bases - Reaction of dilute acids with metals
Acids and Bases - Confirmatory test for hydrogen gas Acids and Bases - Reaction of acids with carbonates Acids and Bases - Reaction of acids with hydrogen carbonates |
By the end of the
lesson, the learner
should be able to:
- Describe the reaction between dilute acids and metals - Carry out experiments on acid-metal reactions - Relate acid-metal reactions to corrosion of metallic structures and pipes |
In groups, learners are guided to:
- Measure dilute hydrochloric acid and add zinc powder - Observe effervescence and test gas produced using burning splint - Write balanced equations for the reactions |
What products are formed when acids react with metals?
|
- Access & Learn Chemistry Learner's Book Grade 10 pg. 169
- Zinc powder - Dilute hydrochloric acid - Test tubes - Wooden splints - Rubber corks - Access & Learn Chemistry Learner's Book Grade 10 pg. 170 - Dilute sulphuric acid - Magnesium ribbon - Delivery tubes - Chemistry Learner's Book Grade 10 pg. 170 - Sodium carbonate - Calcium hydroxide - Delivery tubes - Test tubes - Access & Learn Chemistry Learner's Book Grade 10 pg. 171 - Sodium hydrogen carbonate - Dilute nitric (V) acid |
- Practical assessment
- Observation
- Written exercises
|
|
| 5 | 5 |
Physical Chemistry
|
Acids and Bases - Reaction of acids with metal oxides
Acids and Bases - Reaction of acids with metal hydroxides |
By the end of the
lesson, the learner
should be able to:
- Explain neutralisation reactions involving metal oxides - Carry out experiments on acid-metal oxide reactions - Relate neutralisation to treatment of acidic soils in agriculture |
In groups, learners are guided to:
- Warm dilute nitric (V) acid and add magnesium oxide - Test the resulting solution using pH paper - Record observations and determine nature of solution - Write balanced equations for the reactions |
What is a neutralisation reaction?
|
- Access & Learn Chemistry Learner's Book Grade 10 pg. 172
- Magnesium oxide - Dilute nitric (V) acid - pH paper - Beakers - Bunsen burner - Access & Learn Chemistry Learner's Book Grade 10 pg. 173 - Sodium hydroxide solution - Dilute sulphuric (VI) acid - Phenolphthalein indicator - Measuring cylinders |
- Practical assessment
- Observation
- Written exercises
|
|
| 6 | 1 |
Physical Chemistry
|
Acids and Bases - Universal indicator and pH scale
|
By the end of the
lesson, the learner
should be able to:
- Explain the pH scale and its use - Determine pH values using universal indicator - Relate pH values to water quality testing and swimming pool maintenance |
In groups, learners are guided to:
- Prepare solutions of various acids and bases - Add universal indicator to each solution - Compare colours with pH scale chart - Record pH values and classify solutions |
What does the pH scale measure?
|
- Access & Learn Chemistry Learner's Book Grade 10 pg. 175
- Universal indicator - pH scale chart - Various acid and base solutions - Test tubes - Droppers |
- Practical assessment
- Observation
- Written exercises
|
|
| 6 | 2 |
Physical Chemistry
|
Acids and Bases - Strong and weak acids
Acids and Bases - Strong and weak bases |
By the end of the
lesson, the learner
should be able to:
- Differentiate between strong and weak acids - Classify acids based on their pH values - Connect acid strength to battery acid (strong) versus citrus fruits (weak) |
In groups, learners are guided to:
- Test 0.1 M hydrochloric acid and 0.1 M ethanoic acid using universal indicator - Compare pH values of strong and weak acids - Discuss degree of dissociation in strong and weak acids |
Why do strong acids have lower pH values than weak acids?
|
- Chemistry Learner's Book Grade 10 pg. 175
- 0.1 M hydrochloric acid - 0.1 M ethanoic acid - Universal indicator - pH scale chart - Test tubes - Access & Learn Chemistry Learner's Book Grade 10 pg. 176 - 0.1 M sodium hydroxide - 0.1 M ammonium hydroxide |
- Practical assessment
- Oral questions
- Written exercises
|
|
| 6 | 3 |
Physical Chemistry
|
Acids and Bases - Electrical conductivity of acids and bases
Acids and Bases - Uses of acids in day-to-day life |
By the end of the
lesson, the learner
should be able to:
- Compare electrical conductivity of strong and weak acids and bases - Set up circuits to test conductivity - Connect conductivity to car battery technology and industrial electrochemistry |
In groups, learners are guided to:
- Set up electrical circuits with bulb, dry cell and electrodes - Test conductivity of strong and weak acids and bases - Compare brightness of bulb in different solutions - Record and discuss observations |
Why do strong acids and bases conduct electricity better than weak ones?
|
- Chemistry Learner's Book Grade 10 pg. 176
- Dry cells - Bulbs with holders - Connecting wires - Nails/electrodes - Various acid and base solutions - Access & Learn Chemistry Learner's Book Grade 10 pg. 178 - Digital devices - Reference books - Chart papers - Markers |
- Practical assessment
- Oral questions
- Written exercises
|
|
| 6 | 4 |
Physical Chemistry
|
Acids and Bases - Uses of bases in day-to-day life
Introduction to Salts - Meaning and formation of salts |
By the end of the
lesson, the learner
should be able to:
- Outline the uses of bases in various sectors - Identify applications of bases in agriculture and construction - Connect bases to soap making, cement production and soil treatment |
In groups, learners are guided to:
- Discuss uses of bases in cleaning, food industry and construction - Carry out soil pH testing activity - Discuss role of calcium oxide in neutralising acidic soils - Make natural citrus cleaner using vinegar and citrus peels |
How are bases applied in agriculture and industry?
|
- Access & Learn Chemistry Learner's Book Grade 10 pg. 179
- Soil samples - pH paper - Litmus paper - Vinegar - Citrus peels - Digital resources - Access & Learn Chemistry Learner's Book Grade 10 pg. 181 - Samples of salts (sodium chloride, copper sulphate) - Charts showing neutralisation equations |
- Practical assessment
- Oral questions
- Written exercises
|
|
| 6 | 5 |
Physical Chemistry
|
Introduction to Salts - Normal salts
Introduction to Salts - Acid salts Introduction to Salts - Basic and double salts |
By the end of the
lesson, the learner
should be able to:
- Describe normal salts and their properties - Identify examples of normal salts - Connect normal salts to common table salt and fertilisers like potassium nitrate |
In groups, learners are guided to:
- Discuss characteristics of normal salts (no replaceable hydrogen, pH of 7) - Identify cations and anions in normal salts - Write formulae of normal salts (NaCl, KNO₃, CaSO₄) - Test solutions of normal salts with litmus paper |
What are normal salts and their characteristics?
|
- Access & Learn Chemistry Learner's Book Grade 10 pg. 182
- Samples of normal salts - Litmus paper - Test tubes - Distilled water - Access & Learn Chemistry Learner's Book Grade 10 pg. 183 - Sodium hydrogen carbonate - pH paper - Access & Learn Chemistry Learner's Book Grade 10 pg. 184 - Samples of basic and double salts - Potassium aluminium sulphate (alum) - pH paper |
- Oral questions
- Written exercises
- Practical assessment
|
|
| 7 | 1 |
Physical Chemistry
|
Introduction to Salts - Soluble and insoluble salts
Introduction to Salts - Solubility rules Introduction to Salts - Preparation by direct synthesis |
By the end of the
lesson, the learner
should be able to:
- Define soluble and insoluble salts - Carry out experiments to determine solubility of salts - Relate solubility to water treatment and removal of hardness in water |
In groups, learners are guided to:
- Place spatulaful of different salts in beakers with distilled water - Stir and observe dissolution - Warm mixtures and observe changes - Record observations and classify salts as soluble or insoluble |
How can soluble salts be distinguished from insoluble salts?
|
- Access & Learn Chemistry Learner's Book Grade 10 pg. 185
- Copper (II) sulphate - Copper (II) carbonate - Distilled water - Beakers - Bunsen burner - Chemistry Learner's Book Grade 10 pg. 185 - Solubility table charts - Various salt samples - Test tubes - Digital resources - Access & Learn Chemistry Learner's Book Grade 10 pg. 186 - Copper metal - Sulphur powder - Crucible - Bunsen burner - Tripod stand |
- Practical assessment
- Observation
- Written exercises
|
|
| 7 | 2 |
Physical Chemistry
|
Introduction to Salts - Preparation using acid and metal
Introduction to Salts - Preparation using acid and metal oxide |
By the end of the
lesson, the learner
should be able to:
- Describe preparation of soluble salts using acid and metal - Prepare zinc chloride from zinc and hydrochloric acid - Connect this method to production of hydrogen gas for industrial use |
In groups, learners are guided to:
- Add zinc powder to dilute hydrochloric acid until excess - Test gas produced with burning splint - Filter to obtain filtrate - Evaporate to saturation and crystallise |
Why is the metal added in excess when preparing salts?
|
- Access & Learn Chemistry Learner's Book Grade 10 pg. 187
- Zinc powder - Dilute hydrochloric acid - Filter funnel and paper - Evaporating dish - Bunsen burner - Access & Learn Chemistry Learner's Book Grade 10 pg. 188 - Copper (II) oxide - Dilute nitric (V) acid - Beakers |
- Practical assessment
- Oral questions
- Written assignments
|
|
| 7 | 3 |
Physical Chemistry
|
Introduction to Salts - Preparation using acid and alkali (titration)
Introduction to Salts - Preparation using acid and carbonate |
By the end of the
lesson, the learner
should be able to:
- Describe preparation of salts using acid and alkali - Carry out titration using phenolphthalein indicator - Connect titration to quality control in food and pharmaceutical industries |
In groups, learners are guided to:
- Measure sodium hydroxide into conical flask and add phenolphthalein - Fill burette with dilute hydrochloric acid - Titrate until colour changes from pink to colourless - Evaporate and crystallise to obtain sodium chloride |
How does phenolphthalein indicate the end point of neutralisation?
|
- Access & Learn Chemistry Learner's Book Grade 10 pg. 190
- Sodium hydroxide solution - Dilute hydrochloric acid - Phenolphthalein - Burette and stand - Conical flask - Access & Learn Chemistry Learner's Book Grade 10 pg. 191 - Sodium carbonate - Dilute nitric (V) acid - Calcium hydroxide - Filter funnel - Evaporating dish |
- Practical assessment
- Oral questions
- Written exercises
|
|
| 7 | 4 |
Physical Chemistry
|
Introduction to Salts - Preparation by precipitation (double decomposition)
Introduction to Salts - Hygroscopic, deliquescent and efflorescent salts |
By the end of the
lesson, the learner
should be able to:
- Describe preparation of insoluble salts by precipitation - Prepare lead (II) sulphate by double decomposition - Connect precipitation to water treatment and removal of heavy metals |
In groups, learners are guided to:
- Mix zinc sulphate solution with lead nitrate solution - Observe precipitate formation - Filter, wash and dry the precipitate - Write ionic equations for precipitation reactions |
What is double decomposition and how is it used to prepare insoluble salts?
|
- Access & Learn Chemistry Learner's Book Grade 10 pg. 193
- Zinc sulphate solution - Lead nitrate solution - Filter funnel and paper - Beakers - Distilled water - Access & Learn Chemistry Learner's Book Grade 10 pg. 196 - Iron (III) chloride - Anhydrous copper (II) sulphate - Sodium carbonate decahydrate - Watch glasses |
- Practical assessment
- Oral questions
- Written exercises
|
|
| 7 | 5 |
Physical Chemistry
|
Introduction to Salts - Uses of salts and environmental impact of fertilisers
|
By the end of the
lesson, the learner
should be able to:
- Outline applications of salts in various sectors - Discuss effects of inorganic fertilisers on the environment - Relate salts to food preservation, agriculture and water pollution from fertiliser runoff |
In groups, learners are guided to:
- Search for uses of salts in agriculture, medicine, food and glass industries - Discuss positive and negative effects of inorganic fertilisers - Discuss eutrophication and mitigation measures - Present findings on sustainable use of fertilisers |
How do salts contribute to agriculture and what are the environmental concerns?
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- Access & Learn Chemistry Learner's Book Grade 10 pg. 197
- Samples of inorganic fertilisers - Digital devices - Reference books - Charts on eutrophication |
- Oral questions
- Written assignments
- Project assessment
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| 8 |
END OF YEAR EXAMS |
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| 9 |
EXAMS AND SCHOOL CLOSING |
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