Overall Physics HL mastery
0 / 600 skills mastered
0 %
Easy — Foundations
Medium — Applications
Hard — Structured IB
Very Hard — Integrated
1
Space, Time & Motion
0 / 120
Hard — Structured IB Questions
Very Hard — Integrated Physics HL Challenge
Hard — Structured IB Questions
Very Hard — Integrated Physics HL Challenge
Hard — Structured IB Questions
Very Hard — Integrated Physics HL Challenge
Hard — Structured IB Questions
Very Hard — Integrated Physics HL Challenge
Hard — Structured IB Questions
Very Hard — Integrated Physics HL Challenge
2
The Particulate Nature of Matter
0 / 120
Hard — Structured IB Questions
Very Hard — Integrated Physics HL Challenge
Greenhouse Effect & Energy Balance Hard — Structured IB Questions
Very Hard — Integrated Physics HL Challenge
Hard — Structured IB Questions
Very Hard — Integrated Physics HL Challenge
Hard — Structured IB Questions
Very Hard — Integrated Physics HL Challenge
Hard — Structured IB Questions
Very Hard — Integrated Physics HL Challenge
3
Wave Behaviour
0 / 120
Hard — Structured IB Questions
Very Hard — Integrated Physics HL Challenge
Easy — Foundations
1 Wave terminology Define wavelength, amplitude, frequency, period and wave speed. Application The vocabulary used across sound, light and water waves.Easy 2 The wave equation Apply \(v=f\lambda\). Application Converts between the three quantities used to describe any wave.Easy 3 Transverse waves Describe oscillation perpendicular to energy transfer, as in light and water ripples. Application Explains why light can be polarised but sound cannot.Easy 4 Longitudinal waves Describe oscillation parallel to energy transfer, with compressions and rarefactions. Application Explains how sound propagates through air, water and solids.Easy 5 Waves transfer energy, not matter Explain that particles oscillate about fixed positions while energy propagates. Application Explains why a floating cork bobs but does not travel with the wave.Easy 6 The electromagnetic spectrum Order the regions by wavelength and frequency, all travelling at \(c\) in vacuum. Application Places radio, light and gamma rays on one continuous scale.Easy Hard — Structured IB Questions
Very Hard — Integrated Physics HL Challenge
Hard — Structured IB Questions
Very Hard — Integrated Physics HL Challenge
Standing Waves & Resonance Hard — Structured IB Questions
Very Hard — Integrated Physics HL Challenge
Hard — Structured IB Questions
Very Hard — Integrated Physics HL Challenge
4
Fields
0 / 96
Hard — Structured IB Questions
Very Hard — Integrated Physics HL Challenge
Electric & Magnetic Fields Hard — Structured IB Questions
Very Hard — Integrated Physics HL Challenge
Motion in Electromagnetic Fields Hard — Structured IB Questions
Very Hard — Integrated Physics HL Challenge
Electromagnetic Induction Hard — Structured IB Questions
Very Hard — Integrated Physics HL Challenge
5
Nuclear & Quantum Physics
0 / 120
Hard — Structured IB Questions
Very Hard — Integrated Physics HL Challenge
Hard — Structured IB Questions
Very Hard — Integrated Physics HL Challenge
Radioactivity & Nuclear Stability Hard — Structured IB Questions
Very Hard — Integrated Physics HL Challenge
Hard — Structured IB Questions
Very Hard — Integrated Physics HL Challenge
Hard — Structured IB Questions
Very Hard — Integrated Physics HL Challenge
6
Physics Tools
0 / 24
Mathematical Skills for Physics Hard — Structured IB Questions
Very Hard — Integrated Physics HL Challenge
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