Describe Activity 10.10's set-up and its result for the thin glass plate, the convex lens and the concave lens.
Hint. The same multiple-parallel-beams trick from Activity 10.6, now aimed at lenses.
The set-up. Fix a thin transparent glass plate upright between two identical books, with paper sheets spread on both books to catch the light. Let multiple parallel beams (from a comb with several openings uncovered) fall on it, and observe. Repeat with a convex lens, then a concave lens, in the same position.
The light beam passes through the thin glass plate as it is. The convex lens converges the light falling on it while the concave lens diverges the light.
| Object in the beam's path | Effect on the parallel beams |
|---|---|
| Thin glass plate | Passes through unchanged |
| Convex lens | Converges |
| Concave lens | Diverges |
✦ The flat glass plate is included as a control, not as an afterthought. Since it has no curved surfaces at all, it shows what happens to the beams when nothing about their shape is bent — nothing — which makes clear that convergence and divergence are caused specifically by the curvature of the convex and concave lenses, and not by merely passing through any transparent material whatsoever.
