IB Physics SL C.3.2 Snell's Law Question Bank
Practise IB Physics SL C.3.2 by applying Snell's law to ray and wavefront diagrams, refractive indices and boundary angles.
- Syllabus
- First assessment 2025
- Course
- Physics SL
- Level
- SL
Practise IB Physics SL C.3.2 by applying Snell's law to ray and wavefront diagrams, refractive indices and boundary angles.
Monochromatic light enters the base of a plastic beaker that contains water with an oil layer floating on it. A student draws a diagram to show the directions the light takes as it passes through the layers. The student's diagram has one error at position A and one error at position B. The refractive indices of the materials are shown on the diagram.

The light is refracted at an angle of 32∘ when it enters the plastic layer as shown.
Identify, with a reason, the error in the student's diagram for
light crossing the plastic-water interface (position A).
the angle of refraction ought to be greater than the angle of incidence OR the ray should refract away from the normal
because ray goes from high refractive index/<<optically>> more dense/slower medium to
low refractive index/optically less dense/faster medium
Marking guidance:
Do not allow use of e.g n1
unless medium one is
described e.g. nair
light at the water-oil interface (position B).
there should be a <<transmitted>> ray in the oil
OR
total internal reflection is not possible
because ray goes from low refractive index/<<optically>> less dense/faster medium to high refractive index/<<optically>> more dense/slower medium
Calculate the angle of incidence at the air-plastic interface.
Use of Snell’s Law <sinrsini=11.60≫i=sin−1<1.60×sin32∘>=58<∘≫
'Use of' requires a substitution NOT just a statement of a formula
Accept 1.0 rad (unit must be included to show a deliberate attempt to use rad rather than a calculator mistake)