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SCHEME OF WORK
Chemistry
Grade 10 2026
TERM III
School


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WK LSN STRAND SUB-STRAND LESSON LEARNING OUTCOMES LEARNING EXPERIENCES KEY INQUIRY QUESTIONS LEARNING RESOURCES ASSESSMENT METHODS REFLECTION
1 3
Physical Chemistry
Acids and Bases - Definition and Examples of Acids
By the end of the lesson, the learner should be able to:

- Define acids
- Identify common acids and their sources
- Show interest in learning about acids
In groups, learners are guided to:

- Discuss with peers the meaning of acids
- Identify common acids found at home and in the laboratory
- Research on natural sources of acids
What are acids and where are they found?

- Chemistry Learner's Book
- Digital devices
- Samples of common acids
- Charts showing acids
- Oral questions - Written exercises - Observation
1 4
Physical Chemistry
Acids and Bases - Dissociation of Acids in Water
By the end of the lesson, the learner should be able to:

- Explain the dissociation of acids in water
- Write dissociation equations for common acids
- Relate acidity to hydrogen ion concentration
In groups, learners are guided to:

- Carry out experiments to demonstrate dissociation of acids in water
- Discuss the role of hydrogen ions in acidity
- Write dissociation equations for HCl, H₂SO₄, and HNO₃
How do acids behave when dissolved in water?

- Chemistry Learner's Book
- Laboratory equipment
- Dilute acids
- Conductivity apparatus
- Practical assessment - Written exercises - Oral questions
1 5
Physical Chemistry
Acids and Bases - Physical Properties of Acids
Acids and Bases - Reaction of Acids with Metals
By the end of the lesson, the learner should be able to:

- Describe physical properties of acids
- Identify acids by their taste (sour)
- Observe safety when handling acids
In groups, learners are guided to:

- Discuss physical properties of acids
- Research on why acids taste sour
- Investigate the corrosive nature of acids
What are the physical properties of acids?
- Chemistry Learner's Book
- Digital devices
- Charts showing acid properties
- Safety equipment
- Laboratory equipment
- Dilute acids
- Metal samples (Mg, Zn, Fe)
- Oral questions - Written exercises - Observation
2 1
Physical Chemistry
Acids and Bases - Reaction of Acids with Carbonates
By the end of the lesson, the learner should be able to:

- Describe the reaction of acids with carbonates
- Write equations for reactions of acids with carbonates
- Collect and test for carbon dioxide gas
In groups, learners are guided to:

- Carry out experiments on reactions of acids with carbonates
- Collect and test for the gas produced using lime water
- Write balanced equations for the reactions
How do acids react with carbonates?

- Chemistry Learner's Book
- Laboratory equipment
- Dilute acids
- Sodium carbonate, calcium carbonate
- Practical assessment - Written exercises - Observation
2 2
Physical Chemistry
Acids and Bases - Reaction of Acids with Hydrogen Carbonates
By the end of the lesson, the learner should be able to:

- Describe the reaction of acids with hydrogen carbonates
- Write equations for reactions of acids with hydrogen carbonates
- Compare reactions of carbonates and hydrogen carbonates
In groups, learners are guided to:

- Carry out experiments on reactions of acids with hydrogen carbonates
- Collect and test for the gas produced
- Write balanced equations for the reactions
How do acids react with hydrogen carbonates?

- Chemistry Learner's Book
- Laboratory equipment
- Dilute acids
- Sodium hydrogen carbonate
- Practical assessment - Written exercises - Observation
2 3
Physical Chemistry
Acids and Bases - Reaction of Acids with Metal Oxides
By the end of the lesson, the learner should be able to:

- Describe the reaction of acids with metal oxides
- Write equations for reactions of acids with metal oxides
- Identify the products of neutralisation
In groups, learners are guided to:

- Perform experiments to investigate reactions of acids with metal oxides
- React dilute acid with copper(II) oxide
- Write balanced equations for the reactions
How do acids react with metal oxides?

- Chemistry Learner's Book
- Laboratory equipment
- Dilute acids
- Metal oxides (CuO, MgO)
- Practical assessment - Written exercises - Observation
2 4
Physical Chemistry
Acids and Bases - Reaction of Acids with Hydroxides
By the end of the lesson, the learner should be able to:

- Describe the reaction of acids with hydroxides
- Write equations for neutralisation reactions
- Appreciate the importance of neutralisation
In groups, learners are guided to:

- Perform experiments to investigate reactions of acids and bases with metal hydroxides
- Carry out neutralisation reactions
- Write balanced equations for the reactions
How do acids react with metal hydroxides?

- Chemistry Learner's Book
- Laboratory equipment
- Dilute acids
- Sodium hydroxide solution
- Practical assessment - Written exercises - Observation
2 5
Physical Chemistry
Acids and Bases - Definition and Examples of Bases
By the end of the lesson, the learner should be able to:

- Define bases and alkalis
- Distinguish between bases and alkalis
- Identify common bases and their sources
In groups, learners are guided to:

- Discuss with peers the meaning of bases and alkalis
- Identify common bases found at home and in the laboratory
- Research on natural sources of bases
What are bases and how do they differ from alkalis?

- Chemistry Learner's Book
- Digital devices
- Samples of common bases
- Charts showing bases
- Oral questions - Written exercises - Observation
3 1
Physical Chemistry
Acids and Bases - Dissociation of Bases in Water
By the end of the lesson, the learner should be able to:

- Explain the dissociation of bases in water
- Write dissociation equations for common bases
- Relate basicity to hydroxide ion concentration
In groups, learners are guided to:

- Carry out experiments to demonstrate dissociation of bases in water
- Discuss the role of hydroxide ions in basicity
- Write dissociation equations for NaOH, KOH, and NH₃
How do bases behave when dissolved in water?

- Chemistry Learner's Book
- Laboratory equipment
- Alkali solutions
- Conductivity apparatus
- Practical assessment - Written exercises - Oral questions
3 2
Physical Chemistry
Acids and Bases - Acid-Base Indicators
By the end of the lesson, the learner should be able to:

- Define indicators
- Identify common acid-base indicators
- Use indicators to test for acids and bases
In groups, learners are guided to:

- Conduct experiments to determine strength of acids and bases using indicators
- Test solutions with litmus, phenolphthalein, and methyl orange
- Record colour changes in different solutions
What are indicators and how do they work?

- Chemistry Learner's Book
- Laboratory equipment
- Various indicators
- Acid and base solutions
- Practical assessment - Written exercises - Observation
3 3
Physical Chemistry
Acids and Bases - Acid-Base Indicators
By the end of the lesson, the learner should be able to:

- Define indicators
- Identify common acid-base indicators
- Use indicators to test for acids and bases
In groups, learners are guided to:

- Conduct experiments to determine strength of acids and bases using indicators
- Test solutions with litmus, phenolphthalein, and methyl orange
- Record colour changes in different solutions
What are indicators and how do they work?

- Chemistry Learner's Book
- Laboratory equipment
- Various indicators
- Acid and base solutions
- Practical assessment - Written exercises - Observation
3 4
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
- Use universal indicator to determine pH
- Relate pH values to acidity and basicity
In groups, learners are guided to:

- Discuss the pH scale and its range
- Use universal indicator to test various solutions
- Match pH values with colours on the pH chart
What is the pH scale and how is it used?

- Chemistry Learner's Book
- Universal indicator
- pH chart
- Various solutions
- Practical assessment - Written exercises - Observation
3 5
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
- Use universal indicator to determine pH
- Relate pH values to acidity and basicity
In groups, learners are guided to:

- Discuss the pH scale and its range
- Use universal indicator to test various solutions
- Match pH values with colours on the pH chart
What is the pH scale and how is it used?

- Chemistry Learner's Book
- Universal indicator
- pH chart
- Various solutions
- Practical assessment - Written exercises - Observation
4 1
Physical Chemistry
Acids and Bases - Strong and Weak Acids
By the end of the lesson, the learner should be able to:

- Distinguish between strong and weak acids
- Compare pH values of strong and weak acids
- Relate strength to degree of dissociation
In groups, learners are guided to:

- Compare pH values of hydrochloric acid and ethanoic acid of same concentration
- Carry out activities to compare electrical conductivity
- Discuss the degree of dissociation in strong and weak acids
What is the difference between strong and weak acids?

- Chemistry Learner's Book
- Laboratory equipment
- HCl and CH₃COOH solutions
- Conductivity apparatus
- Practical assessment - Written exercises - Oral questions
4 2
Physical Chemistry
Acids and Bases - Strong and Weak Bases
By the end of the lesson, the learner should be able to:

- Distinguish between strong and weak bases
- Compare pH values of strong and weak bases
- Relate strength to degree of dissociation
In groups, learners are guided to:

- Compare pH values of sodium hydroxide and ammonia solution of same concentration
- Carry out activities to compare electrical conductivity
- Discuss the degree of dissociation in strong and weak bases
What is the difference between strong and weak bases?

- Chemistry Learner's Book
- Laboratory equipment
- NaOH and NH₃ solutions
- Conductivity apparatus
- Practical assessment - Written exercises - Oral questions
4 3
Physical Chemistry
Acids and Bases - Strong and Weak Bases
By the end of the lesson, the learner should be able to:

- Distinguish between strong and weak bases
- Compare pH values of strong and weak bases
- Relate strength to degree of dissociation
In groups, learners are guided to:

- Compare pH values of sodium hydroxide and ammonia solution of same concentration
- Carry out activities to compare electrical conductivity
- Discuss the degree of dissociation in strong and weak bases
What is the difference between strong and weak bases?

- Chemistry Learner's Book
- Laboratory equipment
- NaOH and NH₃ solutions
- Conductivity apparatus
- Practical assessment - Written exercises - Oral questions
4 4
Physical Chemistry
Acids and Bases - Uses of Acids and Bases in Daily Life
By the end of the lesson, the learner should be able to:

- Outline uses of acids and bases in daily life
- Relate properties of acids and bases to their applications
- Appreciate the importance of acids and bases
In groups, learners are guided to:

- Search for information on applications of acids and bases
- Discuss uses in food, medicine, cleaning, and industry
- Properly dispose of waste after experiments
How are acids and bases used in daily life?

- Chemistry Learner's Book
- Digital devices
- Charts showing applications
- Internet access
- Oral questions - Written exercises - Group presentations
4 5
Physical Chemistry
Introduction to Salts - Meaning and Examples of Salts
By the end of the lesson, the learner should be able to:

- Define the term salt
- Identify examples of salts
- Show interest in learning about salts
In groups, learners are guided to:

- Brainstorm and carry out activities to establish the meaning of salt
- Identify samples of salts at home and in the laboratory
- Discuss common examples of salts
What are salts and where are they found?

- Chemistry Learner's Book
- Samples of salts (table salt, fertilisers)
- Digital devices
- Charts showing salts
- Oral questions - Written exercises - Observation
5 1
Physical Chemistry
Introduction to Salts - Normal Salts
By the end of the lesson, the learner should be able to:

- Define normal salts
- Give examples of normal salts
- Write formulae of normal salts
In groups, learners are guided to:

- Discuss with peers the meaning of normal salts
- Identify examples of normal salts
- Write formulae and names of common normal salts
What are normal salts and how are they formed?

- Chemistry Learner's Book
- Digital devices
- Samples of normal salts
- Periodic table
- Oral questions - Written exercises - Observation
5 2
Physical Chemistry
Introduction to Salts - Acidic Salts
By the end of the lesson, the learner should be able to:

- Define acidic salts
- Give examples of acidic salts
- Explain the formation of acidic salts
In groups, learners are guided to:

- Discuss with peers the meaning of acidic salts
- Identify examples of acidic salts
- Write equations showing formation of acidic salts
What are acidic salts and how are they formed?

- Chemistry Learner's Book
- Digital devices
- Charts showing salt types
- Internet access
- Oral questions - Written exercises - Group discussions
5 3
Physical Chemistry
Introduction to Salts - Basic and Double Salts
By the end of the lesson, the learner should be able to:

- Define basic salts and double salts
- Give examples of basic and double salts
- Categorise salts into different types
In groups, learners are guided to:

- Discuss with peers basic and double salts
- Identify examples of basic and double salts
- Categorise given salts into appropriate types
What are basic salts and double salts?

- Chemistry Learner's Book
- Digital devices
- Charts showing salt types
- Internet access
- Oral questions - Written exercises - Observation
5 4
Physical Chemistry
Introduction to Salts - Solubility of Chlorides and Nitrates
By the end of the lesson, the learner should be able to:

- Determine solubility of chlorides and nitrates in water
- Classify chlorides and nitrates as soluble or insoluble
- Show interest in investigating salt properties
In groups, learners are guided to:

- Carry out experiments to determine solubility of chlorides in water
- Test solubility of various nitrates
- Record and classify results
Are all chlorides and nitrates soluble in water?

- Chemistry Learner's Book
- Laboratory equipment
- Various chlorides and nitrates
- Distilled water
- Practical assessment - Written exercises - Observation
5 5
Physical Chemistry
Introduction to Salts - Solubility of Sulphates and Carbonates
Introduction to Salts - Direct Synthesis
By the end of the lesson, the learner should be able to:

- Determine solubility of sulphates and carbonates in water
- Classify sulphates and carbonates as soluble or insoluble
- Apply solubility rules to predict salt solubility
In groups, learners are guided to:

- Carry out experiments to determine solubility of sulphates in water
- Test solubility of various carbonates
- Create a solubility table for common salts
Which sulphates and carbonates are soluble in water?
- Chemistry Learner's Book
- Laboratory equipment
- Various sulphates and carbonates
- Distilled water
- Iron filings
- Chlorine gas
- Practical assessment - Written exercises - Observation
6 1
Physical Chemistry
Introduction to Salts - Reaction of Acids with Metals
By the end of the lesson, the learner should be able to:

- Prepare salts by reacting acids with metals
- Write equations for the reactions
- Observe safety when handling acids
In groups, learners are guided to:

- Carry out experiments to prepare salts by reacting acids with metals
- React zinc with dilute sulphuric acid
- Write balanced equations for the reactions
How are salts prepared from acids and metals?

- Chemistry Learner's Book
- Laboratory equipment
- Dilute acids
- Metal samples (Zn, Mg)
- Practical assessment - Written exercises - Observation
6 2
Physical Chemistry
Introduction to Salts - Reaction of Acids with Bases (Neutralisation)
By the end of the lesson, the learner should be able to:

- Prepare salts by neutralisation
- Write equations for neutralisation reactions
- Apply titration technique in salt preparation
In groups, learners are guided to:

- Carry out experiments to prepare salts by neutralisation
- React dilute acid with alkali using indicator
- Write balanced equations for the reactions
How are salts prepared by neutralisation?

- Chemistry Learner's Book
- Laboratory equipment
- Dilute acids
- Alkali solutions
- Practical assessment - Written exercises - Observation
6 3
Physical Chemistry
Introduction to Salts - Reaction of Acids with Carbonates and Hydrogen Carbonates
By the end of the lesson, the learner should be able to:

- Prepare salts by reacting acids with carbonates
- Write equations for the reactions
- Collect and identify products formed
In groups, learners are guided to:

- Carry out experiments to prepare salts from carbonates
- React dilute acid with sodium carbonate
- Write balanced equations for the reactions
How are salts prepared from carbonates and hydrogen carbonates?

- Chemistry Learner's Book
- Laboratory equipment
- Dilute acids
- Carbonates and hydrogen carbonates
- Practical assessment - Written exercises - Observation
6 4
Physical Chemistry
Introduction to Salts - Reaction of Acids with Carbonates and Hydrogen Carbonates
By the end of the lesson, the learner should be able to:

- Prepare salts by reacting acids with carbonates
- Write equations for the reactions
- Collect and identify products formed
In groups, learners are guided to:

- Carry out experiments to prepare salts from carbonates
- React dilute acid with sodium carbonate
- Write balanced equations for the reactions
How are salts prepared from carbonates and hydrogen carbonates?

- Chemistry Learner's Book
- Laboratory equipment
- Dilute acids
- Carbonates and hydrogen carbonates
- Practical assessment - Written exercises - Observation
6 5
Physical Chemistry
Introduction to Salts - Precipitation Reactions
By the end of the lesson, the learner should be able to:

- Prepare insoluble salts by precipitation
- Write ionic equations for precipitation reactions
- Apply solubility rules in precipitation
In groups, learners are guided to:

- Carry out experiments to prepare insoluble salts by precipitation
- Mix solutions to form precipitates
- Write balanced ionic equations for precipitation reactions
How are insoluble salts prepared by precipitation?

- Chemistry Learner's Book
- Laboratory equipment
- Soluble salt solutions
- Filter paper and funnel
- Practical assessment - Written exercises - Observation
7 1
Physical Chemistry
Introduction to Salts - Hygroscopic Salts
By the end of the lesson, the learner should be able to:

- Define hygroscopic salts
- Identify examples of hygroscopic salts
- Explain the behaviour of hygroscopic salts in air
In groups, learners are guided to:

- Carry out experiments to investigate behaviour of salts in air
- Expose different salts to atmosphere and observe changes
- Record observations on hygroscopic behaviour
What are hygroscopic salts and how do they behave in air?

- Chemistry Learner's Book
- Laboratory equipment
- Samples of hygroscopic salts
- Watch glasses
- Practical assessment - Written exercises - Observation
7 2
Physical Chemistry
Introduction to Salts - Hygroscopic Salts
By the end of the lesson, the learner should be able to:

- Define hygroscopic salts
- Identify examples of hygroscopic salts
- Explain the behaviour of hygroscopic salts in air
In groups, learners are guided to:

- Carry out experiments to investigate behaviour of salts in air
- Expose different salts to atmosphere and observe changes
- Record observations on hygroscopic behaviour
What are hygroscopic salts and how do they behave in air?

- Chemistry Learner's Book
- Laboratory equipment
- Samples of hygroscopic salts
- Watch glasses
- Practical assessment - Written exercises - Observation
7 3
Physical Chemistry
Introduction to Salts - Deliquescent Salts
By the end of the lesson, the learner should be able to:

- Define deliquescent salts
- Identify examples of deliquescent salts
- Distinguish between hygroscopic and deliquescent salts
In groups, learners are guided to:

- Carry out experiments to investigate deliquescent behaviour
- Expose calcium chloride and sodium hydroxide to air
- Compare hygroscopic and deliquescent salts
What are deliquescent salts and how do they differ from hygroscopic salts?

- Chemistry Learner's Book
- Laboratory equipment
- Samples of deliquescent salts
- Watch glasses
- Practical assessment - Written exercises - Observation
7 4
Physical Chemistry
Introduction to Salts - Deliquescent Salts
By the end of the lesson, the learner should be able to:

- Define deliquescent salts
- Identify examples of deliquescent salts
- Distinguish between hygroscopic and deliquescent salts
In groups, learners are guided to:

- Carry out experiments to investigate deliquescent behaviour
- Expose calcium chloride and sodium hydroxide to air
- Compare hygroscopic and deliquescent salts
What are deliquescent salts and how do they differ from hygroscopic salts?

- Chemistry Learner's Book
- Laboratory equipment
- Samples of deliquescent salts
- Watch glasses
- Practical assessment - Written exercises - Observation
7 5
Physical Chemistry
Introduction to Salts - Efflorescent Salts
By the end of the lesson, the learner should be able to:

- Define efflorescent salts
- Identify examples of efflorescent salts
- Explain the loss of water of crystallisation
In groups, learners are guided to:

- Carry out experiments to investigate efflorescent behaviour
- Expose washing soda to air and observe changes
- Discuss the concept of water of crystallisation
What are efflorescent salts and why do they lose water?

- Chemistry Learner's Book
- Laboratory equipment
- Washing soda crystals
- Watch glasses
- Practical assessment - Written exercises - Observation
8 1
Physical Chemistry
Introduction to Salts - Applications of Salts in Daily Life
By the end of the lesson, the learner should be able to:

- Outline uses of salts in various industries
- Discuss effects of excessive use of inorganic fertilisers
- Appreciate the importance of salts in daily life
In groups, learners are guided to:

- Discuss with peers applications of salts in agriculture, food, medicine, and industry
- Search for information on effects of inorganic fertilisers on environment
- Discuss mitigation measures for environmental challenges
How are salts used in daily life and what are the environmental concerns?

- Chemistry Learner's Book
- Digital devices
- Charts showing salt applications
- Internet access
- Oral questions - Written exercises - Group presentations
8 1-2
Physical Chemistry
Introduction to Salts - Applications of Salts in Daily Life
By the end of the lesson, the learner should be able to:

- Outline uses of salts in various industries
- Discuss effects of excessive use of inorganic fertilisers
- Appreciate the importance of salts in daily life
In groups, learners are guided to:

- Discuss with peers applications of salts in agriculture, food, medicine, and industry
- Search for information on effects of inorganic fertilisers on environment
- Discuss mitigation measures for environmental challenges
How are salts used in daily life and what are the environmental concerns?

- Chemistry Learner's Book
- Digital devices
- Charts showing salt applications
- Internet access
- Oral questions - Written exercises - Group presentations
8-9

END OF TERM ASSESSMENT AND CLOSING


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