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O-Level Pure Physics help and practice
Secondary school, working toward the Singapore-Cambridge GCE O-Level. Rae explains, marks and drills Pure Physics with your level in mind. Free to try, no install.
What Rae does for Physics
- Work through equations and units one step at a time.
- Discuss the assumptions and constants used in a calculation.
- Clear diagrams that make the setup click.
- Snap a photo of the problem, send a voice note, or attach the file.
- Revisit topics with Rae’s notes and practice tools.
Use the SEAB syllabus for O-Level Pure Physics (6091) to check which skills you need to practise.
Topics
Physical Quantities, Units and Measurement
Syllabus expectations and practice.
Kinematics
Syllabus expectations, worked examples and practice.
Dynamics
Syllabus expectations, worked examples and practice.
Turning Effects of Forces
Syllabus expectations and practice.
Pressure
Syllabus expectations, worked examples and practice.
Energy
Syllabus expectations, worked examples and practice.
Kinetic Particle Model of Matter
Syllabus expectations, worked examples and practice.
Thermal Processes
Syllabus expectations, worked examples and practice.
Thermal Properties of Matter
Syllabus expectations, worked examples and practice.
General Properties of Waves
Syllabus expectations and practice.
Electromagnetic Spectrum
Syllabus expectations, worked examples and practice.
Light
Syllabus expectations, worked examples and practice.
Static Electricity
Syllabus expectations and practice.
Current of Electricity
Syllabus expectations, worked examples and practice.
D.C. Circuits
Syllabus expectations, worked examples and practice.
Practical Electricity
Syllabus expectations, worked examples and practice.
Magnetism
Syllabus expectations and practice.
Electromagnetism
Syllabus expectations, worked examples and practice.
Electromagnetic Induction
Syllabus expectations, worked examples and practice.
Radioactivity
Syllabus expectations and practice.
See also: which topics come up most in past papers.
How the exam is structured
Paper 1 (Multiple Choice)
- Whole paper (40 marks): Forty compulsory multiple-choice items.
Paper 2 (Structured and Free Response)
- Section A (70 marks): A varying number of compulsory structured questions; the final two questions total 20 marks and one of them is a data-based question worth 8 to 12 marks that requires interpreting or working from a given stem of information.
- Section B (10 marks): Two free-response questions are set.
Paper 3 (Practical)
- Section A (20 marks): One or two compulsory practical experiment questions.
- Section B (20 marks): A single compulsory practical experiment question; Planning (P) may be assessed and data-analysis parts may not need equipment.
What the exam rewards
- A Knowledge with understanding: recall and understand scientific facts, laws, definitions, concepts, vocabulary, symbols and units, apparatus and techniques, the determination of quantities, and applications with their social, economic and environmental effects. (45% of the marks)
- B Handling information and solving problems: locate and reorganise information, convert between forms, process numerical data, spot patterns and infer trends, give reasoned explanations, form hypotheses and predictions, and solve unfamiliar problems. (55% of the marks)
- C Experimental skills and investigations: follow instructions, handle apparatus and materials, make and record observations and measurements, interpret and judge results, and plan investigations while evaluating and improving methods.
How it works
Open Rae on the web or in Telegram. Ask a question, attach your working or use voice. Read the explanation, try a follow-up question and use the notes and practice tools to revisit what you learned. AI feedback can make mistakes; check it against your syllabus and your teacher’s guidance.