• Waves travelling in two and three dimensions can be described through the concepts of wavefronts and rays.
0%
Mastery
0
Attempts
0
Mistakes
Start with the concept explanation, then practise to create mastery evidence.
2
Learning objective
C.3.2—Snell’s law
New
• Snell’s law: n1 sinθ1 = n2 sinθ2.
0%
Mastery
0
Attempts
0
Mistakes
Start with the concept explanation, then practise to create mastery evidence.
3
Learning objective
C.3.3—Refractive index
New
• Refractive index: n=c/v.
0%
Mastery
0
Attempts
0
Mistakes
Start with the concept explanation, then practise to create mastery evidence.
4
Learning objective
C.3.4—Total internal reflection
New
• Total internal reflection condition uses critical angle: sinθc=n2/n1.
0%
Mastery
0
Attempts
0
Mistakes
Start with the concept explanation, then practise to create mastery evidence.
5
Learning objective
C.3.5—Superposition
New
• Superposition adds displacements where waves overlap.
0%
Mastery
0
Attempts
0
Mistakes
Start with the concept explanation, then practise to create mastery evidence.
6
Learning objective
C.3.6—Coherence
New
• Coherence requires constant phase difference between waves.
0%
Mastery
0
Attempts
0
Mistakes
Start with the concept explanation, then practise to create mastery evidence.
7
Learning objective
C.3.7—Path difference
New
• Path difference determines constructive or destructive interference.
0%
Mastery
0
Attempts
0
Mistakes
Start with the concept explanation, then practise to create mastery evidence.
8
Learning objective
C.3.8—Two-source interference
New
• Two-source interference depends on path difference and wavelength.
0%
Mastery
0
Attempts
0
Mistakes
Start with the concept explanation, then practise to create mastery evidence.
9
Learning objective
C.3.9—Young double-slit equation
New
• Young double-slit spacing: s = λD/d.
0%
Mastery
0
Attempts
0
Mistakes
Start with the concept explanation, then practise to create mastery evidence.
10
Learning objective
C.3.10—Reflection, refraction and transmission at boundaries
New
• Explain wave behaviour at boundaries in terms of reflection, refraction and transmission.
• Sketch and interpret incident, reflected and transmitted wavefronts and rays at normal or oblique incidence within the syllabus guidance.
0%
Mastery
0
Attempts
0
Mistakes
Start with the concept explanation, then practise to create mastery evidence.
11
Learning objective
C.3.11—Diffraction around bodies and through apertures
New
• Explain diffraction around a body and through an aperture.
• Use wavefront–ray diagrams to represent diffraction, and relate greater spreading qualitatively to wavelength and aperture size.
0%
Mastery
0
Attempts
0
Mistakes
Start with the concept explanation, then practise to create mastery evidence.