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Summary
- Description:
The MS Word document comprises Grade 10 Rationalized Electricity Term 2 Records of Work 2026 – Distinction. The PDF version is also available upon your request.
This records of work provides extensive coverage of the Term 2 2026 Grade 10 Electricity syllabus, developed in line with the KICD-approved curriculum design and synchronised with Term 2 schemes of work and lesson plans.
- Number of Weeks: Weeks 1–8 and 10–12 (Week 9 is reserved for mid-term break, while Weeks 13 and 14 are allocated for end of term 2 revisions, exam preparation and administration)
- Number of Lessons/Periods per Week: 5 lessons per week
It covers the following strands and sub-strands:
- Fundamentals of Electricity (Weeks 1–10)
- Cells and Batteries
- Principle of operation of primary cells
- Charging and discharging of secondary cells
- Connecting batteries in series and parallel
- Internal resistance of cells
- Charging methods of batteries – constant current, constant voltage, trickle and float charging
- Maintenance procedures on cells and batteries
- Safe disposal of cells and batteries
- Capacitors and Capacitance
- Principle of operation of a capacitor
- Characteristics of capacitive circuits – charging and discharging in DC circuits
- Selecting appropriate capacitors for electric circuits
- Series and parallel connection of capacitors including problem solving
- Importance of capacitors in electrical appliances – filtering, energy storage and signal processing
- Pictorial Drawings
- Principles of pictorial drawing – isometric, oblique and perspective
- Creating isometric and oblique drawings from 2D sketches
- Using drawing tools to produce pictorial representations
- Interpreting pictorial drawings
- Importance of pictorial drawings in engineering design
- Engineering drawing symbols and their applications
- Peer review and practical application of pictorial drawings
- Cells and Batteries
- Electronics (Weeks 10–12)
- Semiconductor Theory
- Characteristics of semiconductor materials
- Atomic structure of semiconductors and covalent bonding
- Intrinsic semiconductors
- Extrinsic semiconductors and the doping process
- N-type and P-type semiconductor materials
- Formation of the PN junction and the depletion layer
- Modelling the PN junction and covalent bonding in extrinsic semiconductors
- Applications of semiconductor materials in electronic engineering
- Review and consolidation of semiconductor theory
- Semiconductor Theory
- File Size:46.54 KB
- Length:11 pages
- Category:Records of Work
- Level:Grade 10
- Subject:ELECTRICITY
- Posted By:Caleb_Peter
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