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| WK | LSN | STRAND | SUB-STRAND | LESSON LEARNING OUTCOMES | LEARNING EXPERIENCES | KEY INQUIRY QUESTIONS | LEARNING RESOURCES | ASSESSMENT METHODS | REFLECTION |
|---|---|---|---|---|---|---|---|---|---|
| 1 |
SCHOOL OPENING AND REVISION OF END TERM 2 EXAMS |
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| 2 | 1 |
Living Things and Their Environment
|
Human Excretory System - Components of the excretory system
Human Excretory System - External parts of the skin |
By the end of the
lesson, the learner
should be able to:
- Identify components of the excretory system - Recognize the skin as an excretory organ - Appreciate the importance of waste removal |
In groups, learners are guided to:
- Brainstorm on waste removal in humans - Identify excretory organs (skin, lungs, kidneys) - Discuss the role of excretory system - Compare different excretory organs |
What organs make up the human excretory system?
|
- Master Integrated Science pg. 119
- Charts of excretory system - Digital resources - Master Integrated Science pg. 120 - Hand lenses - Observation sheets |
- Observation
- Oral questions
- Practical work
|
|
| 2 | 2-3 |
Living Things and Their Environment
|
Human Excretory System - Structure of the skin
Human Excretory System - Functions of skin parts Human Excretory System - Understanding excretion and waste products |
By the end of the
lesson, the learner
should be able to:
- Identify parts of the skin from diagrams - Label epidermis, dermis, sweat glands and ducts - Understand the layered structure of skin - Describe functions of skin parts - Explain the sweating process - Appreciate the skin's protective role |
In groups, learners are guided to:
- Study images and identify labeled parts A to F - Use charts to label parts of human skin - Draw and label parts of human skin - Share work with classmates - Name waste products removed through skin - Explain functions of sweat glands, ducts and pores - Discuss other functions of skin parts - Search for information on skin functions |
What are the main structural parts of the human skin?
How do the different parts of the skin function? |
- Master Integrated Science pg. 121 - Skin structure charts - Digital devices - Master Integrated Science pg. 122 - Reference materials - Digital resources - Master Integrated Science pg. 123 - Puzzle materials - Story completion sheets |
- Assessment rubrics
- Practical work
- Written assignments
- Oral questions - Written tests - Assessment rubrics |
|
| 2 | 4 |
Living Things and Their Environment
|
Human Excretory System - Parts of the urinary system
Human Excretory System - Modeling the urinary system |
By the end of the
lesson, the learner
should be able to:
- Identify parts of the urinary system - Label kidneys, ureters, bladder and urethra - Understand the urinary system structure |
In groups, learners are guided to:
- Study diagram and identify urinary system - Identify and name labeled parts A to E - Draw well-labeled diagram of urinary system - Compare drawings with classmates |
What are the main parts of the urinary system?
|
- Master Integrated Science pg. 124
- Urinary system charts - Digital devices - Master Integrated Science pg. 125 - Locally available materials - Model construction supplies |
- Practical work
- Observation
- Oral questions
|
|
| 2 | 5 |
Living Things and Their Environment
|
Human Excretory System - Functions of urinary system parts
|
By the end of the
lesson, the learner
should be able to:
- Describe functions of kidneys, ureters, bladder and urethra - Explain the process of urine formation - Appreciate the complexity of kidney function |
In groups, learners are guided to:
- Answer questions about functions of urinary system parts - Use textbooks to search for function information - Take turns reading questions and answering - Share findings with classmates |
How do the parts of the urinary system work together?
|
- Master Integrated Science pg. 126 - Function reference materials - Question cards |
- Assessment rubrics
- Oral questions
- Written assignments
|
|
| 3 | 1 |
Living Things and Their Environment
|
Human Excretory System - External parts of the kidney
Human Excretory System - Kidney disorders and their causes |
By the end of the
lesson, the learner
should be able to:
- Identify external parts of the kidney - Label renal artery, renal vein, hilum and renal capsule - Understand kidney structure |
In groups, learners are guided to:
- Study diagram and identify parts marked A to C - Use charts to compare answers - Draw well-labeled diagram of kidney - Search for information on kidney functions |
What are the external parts of the kidney and their functions?
|
- Master Integrated Science pg. 127
- Kidney structure charts - Digital resources - Master Integrated Science pg. 128 - Reference materials - Case study conversations |
- Practical work
- Observation schedule
- Written tests
|
|
| 3 | 2-3 |
Living Things and Their Environment
|
Human Excretory System - Prevention of kidney disorders
Human Excretory System - Promoting skin health Human Excretory System - Promoting kidney health |
By the end of the
lesson, the learner
should be able to:
- Describe ways to prevent kidney disorders - Develop healthy lifestyle habits - Take responsibility for kidney health - Identify practices that promote healthy skin - Develop good hygiene habits - Appreciate the importance of skin care |
In groups, learners are guided to:
- Discuss prevention methods for kidney disorders - Listen to resource person on kidney health - Write short notes on prevention strategies - Present findings to classmates - Study pictures and identify healthy skin - Discuss activities to promote healthy skin - Give advice for skin hygiene scenarios - Search for information on skin health practices |
How can kidney disorders be prevented?
What activities promote healthy skin? |
- Master Integrated Science pg. 129 - Health promotion materials - Resource person - Master Integrated Science pg. 130 - Health education materials - Digital devices - Master Integrated Science pg. 131 - Nutrition information - Health guidelines |
- Written tests
- Assessment rubrics
- Observation
- Practical work - Assessment rubrics - Checklist |
|
| 3 | 4 |
Living Things and Their Environment
|
Human Excretory System - Developing daily health logs
|
By the end of the
lesson, the learner
should be able to:
- Create daily logs for skin and kidney health - Plan health-promoting activities - Take responsibility for personal health |
In groups, learners are guided to:
- Study sample daily log for health activities - Create personal plan using provided guide - Show plan to family members - Follow and monitor daily health activities |
How can we plan and track activities that promote skin and kidney health?
|
- Master Integrated Science pg. 132 - Planning templates - Family involvement |
- Portfolio assessment
- Self-monitoring
- Family feedback
|
|
| 3 | 5 |
Living Things and Their Environment
|
Human Excretory System - Integration and health promotion
Human Excretory System - Review and assessment |
By the end of the
lesson, the learner
should be able to:
- Integrate knowledge of excretory system with health practices - Share health knowledge with family - Demonstrate leadership in health promotion |
In groups, learners are guided to:
- Share learning with parents or guardians - Discuss additional health promotion strategies - Connect excretory system to nutrition concepts - Develop health education materials |
How can knowledge of the excretory system benefit families and communities?
|
- Master Integrated Science pg. 133
- Community health resources - Family discussion guides - Assessment papers - Review materials - Health case studies |
- Community feedback
- Health promotion projects
- Presentation assessment
|
|
| 4 | 1 |
Living Things and Their Environment
|
Human Excretory System - Extension and enrichment
Human Excretory System - Final integration and reflection |
By the end of the
lesson, the learner
should be able to:
- Explore advanced concepts in excretory system function - Research current health issues - Demonstrate expertise in health education |
In groups, learners are guided to:
- Research current topics in kidney and skin health - Prepare health education presentations - Create health promotion campaigns - Mentor younger students on health topics |
How can I use my knowledge to promote health in my community?
|
- Advanced health resources
- Research materials - Presentation tools - Reflection journals - Integration activities - Goal-setting materials |
- Research projects
- Presentation skills
- Community impact assessment
|
|
| 4 | 2-3 |
Force and Energy
|
Electrical Energy - Sources of electricity in the environment
Electrical Energy - Solar, hydro-electric and geothermal power Electrical Energy - Wind, nuclear and other power sources |
By the end of the
lesson, the learner
should be able to:
- Identify sources of electricity in the environment - Distinguish between renewable and non-renewable sources - Appreciate the variety of electricity sources - Describe how solar power is generated - Explain hydro-electric power generation - Understand geothermal energy production |
In groups, learners are guided to:
- Brainstorm on electrical energy uses - Identify sources of electricity at school, home, hospital, market - Study images and identify electricity sources - Discuss sources used for laboratory experiments - Search for information on solar, hydro-electric and geothermal power - Study figures showing power generation systems - Discuss advantages of renewable energy sources - Compare different power generation methods |
What are the different sources of electricity in our environment?
How do renewable energy sources generate electricity? |
- Master Integrated Science pg. 134 - Images of electricity sources - Digital devices - Master Integrated Science pg. 135 - Digital resources - Power generation diagrams - Master Integrated Science pg. 136 - Energy conversion charts - Reference materials |
- Observation
- Oral questions
- Practical work
- Written tests - Assessment rubrics - Oral questions |
|
| 4 | 4 |
Force and Energy
|
Electrical Energy - Electrical cells and batteries
|
By the end of the
lesson, the learner
should be able to:
- Identify electrical cells and batteries - Understand how batteries store and release energy - Recognize positive and negative terminals |
In groups, learners are guided to:
- Examine electrical cells and identify terminals - Study battery structure and function - Practice identifying positive and negative terminals - Discuss battery safety measures |
How do electrical cells and batteries provide electricity?
|
- Master Integrated Science pg. 137 - Electrical cells - Battery samples |
- Practical work
- Observation schedule
- Safety checklist
|
|
| 4 | 5 |
Force and Energy
|
Electrical Energy - Flow of electric current in series circuits
Electrical Energy - Flow of electric current in parallel circuits |
By the end of the
lesson, the learner
should be able to:
- Demonstrate flow of electric current in series circuits - Set up simple series circuits - Understand circuit continuity |
In groups, learners are guided to:
- Set up simple electrical circuits in series - Use dry cells, connecting wires, switches and bulbs - Observe what happens in each circuit setup - Draw sketches of circuit arrangements |
How does electric current flow in series circuits?
|
- Master Integrated Science pg. 138
- Electrical apparatus - Circuit materials - Master Integrated Science pg. 139 - Electrical components - Circuit diagrams |
- Assessment rubrics
- Practical work
- Observation
|
|
| 5 | 1 |
Force and Energy
|
Electrical Energy - Understanding electrical circuits
|
By the end of the
lesson, the learner
should be able to:
- Define electrical circuits - Distinguish between open and closed circuits - Explain the role of switches |
In groups, learners are guided to:
- Study electrical circuit components - Identify positive and negative terminals - Practice opening and closing circuits with switches - Analyze circuit diagrams |
What makes an electrical circuit work effectively?
|
- Master Integrated Science pg. 140 - Circuit analysis materials - Switch demonstrations |
- Checklist
- Oral questions
- Circuit testing
|
|
| 5 | 2-3 |
Force and Energy
|
Electrical Energy - Series and parallel arrangements
Electrical Energy - Common electrical appliances Electrical Energy - Safety measures with electrical appliances Electrical Energy - Electrical safety in daily life |
By the end of the
lesson, the learner
should be able to:
- Compare series and parallel arrangements - Predict circuit behavior - Understand current flow patterns - Identify safety measures for electrical appliances - Recognize electrical hazards - Practice safe handling procedures |
In groups, learners are guided to:
- Classify circuits as series or parallel - Analyze effects of removing bulbs from circuits - Compare brightness of bulbs in different arrangements - Draw various circuit configurations - Complete statements about safety measures - Analyze scenarios with electrical hazards - Discuss actions for electrical emergencies - Search for safety information |
How do series and parallel arrangements affect circuit performance?
How can we safely handle electrical appliances? |
- Master Integrated Science pg. 141
- Circuit comparison charts - Analysis worksheets - Master Integrated Science pg. 142 - Appliance pictures - Flashcards - Master Integrated Science pg. 143 - Safety guidelines - Emergency procedures - Master Integrated Science pg. 144 - Safety manuals - Emergency resources |
- Assessment rubrics
- Problem solving
- Circuit analysis
- Written tests - Safety demonstrations - Checklist |
|
| 5 | 4 |
Force and Energy
|
Electrical Energy - Uses of electricity in daily life
|
By the end of the
lesson, the learner
should be able to:
- Identify multiple uses of electricity - Appreciate electricity's importance - Connect electricity to modern living |
In groups, learners are guided to:
- State uses of electricity in homes, schools, hospitals, factories - Identify electricity uses in pictures - Name other uses in daily life - Discuss importance of electrical systems |
How does electricity support modern life?
|
- Master Integrated Science pg. 145 - Usage examples - Modern life illustrations |
- Practical work
- Oral questions
- Written assignments
|
|
| 5 | 5 |
Force and Energy
|
Electrical Energy - Integration and application
Electrical Energy - Review and assessment |
By the end of the
lesson, the learner
should be able to:
- Integrate knowledge of electrical energy - Apply electrical concepts to solve problems - Design simple electrical solutions |
In groups, learners are guided to:
- Complete comprehensive electrical energy questions - Design simple circuits for specific purposes - Solve electrical problems - Connect electrical knowledge to other subjects |
How can electrical energy knowledge be applied to solve real problems?
|
- Master Integrated Science pg. 145
- Problem-solving materials - Design challenges - Assessment papers - Performance reviews - Improvement plans |
- Project assessment
- Problem solving
- Design evaluation
|
|
| 6 | 1 |
Force and Energy
|
Electrical Energy - Extension and research
|
By the end of the
lesson, the learner
should be able to:
- Research advanced electrical concepts - Explore careers in electrical engineering - Demonstrate leadership in electrical safety |
In groups, learners are guided to:
- Research current developments in electrical energy - Explore careers in electrical fields - Create electrical safety campaigns - Mentor younger students on electrical concepts |
How can electrical energy knowledge contribute to future careers and community safety?
|
- Advanced electrical resources - Career information - Research tools |
- Research projects
- Career exploration
- Community service assessment
|
|
| 6 | 2-3 |
Force and Energy
|
Electrical Energy - Innovation and creativity
Magnetism - Identifying and demonstrating magnetic properties Magnetism - Demonstrating attraction and repulsion Magnetism - Directional properties of magnets |
By the end of the
lesson, the learner
should be able to:
- Design innovative electrical solutions - Think creatively about electrical applications - Demonstrate entrepreneurial thinking - Demonstrate magnetic attraction and repulsion - Understand interaction between magnets - Predict magnetic behavior |
In groups, learners are guided to:
- Design solutions for electrical problems in school/community - Create models of innovative electrical devices - Present creative electrical ideas - Develop business plans for electrical innovations - Place two bar magnets on flat surface - Bring magnet ends close to each other - Observe and record attraction or repulsion - Reverse magnet ends and observe changes |
How can I use creativity and innovation to solve electrical energy challenges?
How do magnets interact with each other? |
- Innovation materials
- Design supplies - Presentation tools - Master Integrated Science pg. 146 - Bar magnets - Iron filings and nails - Master Integrated Science pg. 147 - Two bar magnets - Observation sheets - Master Integrated Science pg. 148 - Thread and retort stand - Compass for reference |
- Innovation assessment
- Creativity evaluation
- Entrepreneurship skills
- Assessment rubrics - Practical work - Prediction skills |
|
| 6 | 4 |
Force and Energy
|
Magnetism - Magnetic poles and their identification
|
By the end of the
lesson, the learner
should be able to:
- Identify magnetic poles - Label north and south poles - Understand pole characteristics |
In groups, learners are guided to:
- Place bar magnet on iron filings - Observe where iron filings cling most - Suspend magnet and identify north-pointing end - Label north and south poles correctly |
What are magnetic poles and how can they be identified?
|
- Master Integrated Science pg. 149 - Iron filings - Pole identification materials |
- Practical work
- Written tests
- Pole identification assessment
|
|
| 6 | 5 |
Force and Energy
|
Magnetism - Magnetic strength and measurement
Magnetism - Basic law of magnetism |
By the end of the
lesson, the learner
should be able to:
- Demonstrate magnetic strength - Compare strength of different magnets - Understand factors affecting magnetic strength |
In groups, learners are guided to:
- Use spring balance to measure magnetic strength - Attach magnets to steel surfaces and measure detachment force - Compare readings for different magnets - Identify strongest magnets |
How can magnetic strength be measured and compared?
|
- Master Integrated Science pg. 150
- Spring balance - Various magnets - Master Integrated Science pg. 151 - Multiple bar magnets - Law formulation materials |
- Assessment rubrics
- Measurement skills
- Data analysis
|
|
| 7 | 1 |
Force and Energy
|
Magnetism - Magnetic and non-magnetic materials
|
By the end of the
lesson, the learner
should be able to:
- Classify materials as magnetic or non-magnetic - Test materials with magnets - Understand material properties |
In groups, learners are guided to:
- Collect various materials from school environment - Test each material with suspended magnet - Classify materials into magnetic and non-magnetic - Create classification table |
How can materials be classified based on their response to magnets?
|
- Master Integrated Science pg. 152 - Collection of materials - Classification tables |
- Practical work
- Classification skills
- Material testing
|
|
| 7 | 2-3 |
Force and Energy
|
Magnetism - Testing household materials
Magnetism - Uses of magnets in separation Magnetism - Magnets in technology and navigation |
By the end of the
lesson, the learner
should be able to:
- Apply magnetic testing to household items - Extend classification skills - Connect learning to home environment - Understand magnets in speakers and compasses - Appreciate magnetic navigation - Connect magnetism to technology |
In groups, learners are guided to:
- Test household items with parent/guardian permission - Use magnet to classify household materials - Record observations in table format - Share findings with classmates - Explain magnetic demonstrations and magic tricks - Suggest magnetic solutions for practical problems - Study magnetic compass operations - Research technological applications |
What household materials are magnetic or non-magnetic?
How do magnets work in speakers, compasses, and other technologies? |
- Master Integrated Science pg. 153
- Household materials - Home testing permissions - Master Integrated Science pg. 154 - Application examples - Magnetic toys - Master Integrated Science pg. 155 - Magnetic compass - Speaker demonstrations |
- Home-school connection
- Extended classification
- Family involvement
- Assessment rubrics - Technology connections - Research skills |
|
| 7 | 4 |
Force and Energy
|
Magnetism - Practical applications and problem solving
Magnetism - Review and integration |
By the end of the
lesson, the learner
should be able to:
- Apply magnetic knowledge to solve problems - Design magnetic solutions - Demonstrate creative thinking |
In groups, learners are guided to:
- Listen to resource person on magnet applications - Create posters on daily life uses of magnets - Solve practical problems using magnets - Design magnetic devices for specific purposes |
How can magnetic knowledge be used to solve real-world problems?
|
- Master Integrated Science pg. 156
- Problem-solving scenarios - Design materials - Master Integrated Science pg. 157 - Review materials - Assessment questions |
- Problem-solving assessment
- Design evaluation
- Creative thinking
|
|
| 7 | 5 |
Force and Energy
|
Magnetism - Extension and research
Magnetism - Innovation and creativity |
By the end of the
lesson, the learner
should be able to:
- Research advanced magnetic concepts - Explore magnetic technologies - Demonstrate expertise in magnetism |
In groups, learners are guided to:
- Research electromagnets and magnetic levitation - Study magnetic storage devices - Investigate magnetic medical applications - Create advanced magnetic projects |
How are advanced magnetic technologies changing our world?
|
- Advanced magnetic resources
- Research materials - Technology examples - Innovation materials - Design supplies - Presentation tools |
- Research projects
- Technology analysis
- Advanced applications
|
|
| 8 | 1 |
Force and Energy
|
Force and Energy Integration - Connecting electrical energy and magnetism
|
By the end of the
lesson, the learner
should be able to:
- Connect electrical energy and magnetism concepts - Understand electromagnetic relationships - Integrate Force and Energy strand learning |
In groups, learners are guided to:
- Compare electrical and magnetic forces - Explore connections between electricity and magnetism - Investigate electromagnetic devices - Create integrated concept maps |
How are electrical energy and magnetism related?
|
- Integration materials - Electromagnetic examples - Concept mapping tools |
- Integration assessment
- Concept understanding
- Relationship analysis
|
|
| 8 | 2-3 |
Force and Energy
|
Force and Energy Integration - Comprehensive review and assessment
Force and Energy Integration - Real-world applications and careers Force and Energy Integration - Future learning and reflection |
By the end of the
lesson, the learner
should be able to:
- Demonstrate mastery of entire Force and Energy strand - Apply concepts to complex problems - Show readiness for advanced physics concepts - Reflect on entire Force and Energy strand learning - Set goals for advanced physics study - Demonstrate readiness for STEM pathway |
In groups, learners are guided to:
- Complete comprehensive Force and Energy assessment - Solve complex problems involving electricity and magnetism - Demonstrate practical skills in both areas - Reflect on strand learning - Complete comprehensive reflection on Force and Energy learning - Set goals for Senior School physics studies - Create portfolio of best work from strand - Plan for continued STEM education |
What have I learned about Force and Energy and how will this help in future studies?
How has learning about Force and Energy prepared me for advanced physics studies? |
- Comprehensive assessment materials
- Complex problem scenarios - Reflection guides - Career information - Field trip resources - Community connections - Reflection portfolios - Goal-setting materials - STEM pathway information |
- Summative assessment
- Practical skills evaluation
- Future readiness assessment
- Portfolio assessment - Reflection quality - Goal-setting skills |
|
| 8-9 |
ADMINISTRATION OF END OF YEAR EXAM |
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