Ray Optics and Optical Instruments

Physics · Class 12

Simulation · Physics · Class 12

Thin lens: the same drag, a different formula

From the lesson Thin lenses: lens maker's formula and thin lens formula in Ray Optics and Optical Instruments. Change the values and watch what happens.

The idea behind it

NCERT § "Refraction by a Lens"

  • Lens maker's formula: 1/f = (n₂₁ − 1)(1/R₁ − 1/R₂), where n₂₁ is the refractive index of the lens material relative to the surrounding medium.
  • For a biconvex lens with light from the left, R₁ is positive and R₂ is negative; for a biconcave lens, R₁ is negative and R₂ is positive.
  • A convex (converging) lens has positive f and a concave (diverging) lens has negative f in this convention.
  • Thin lens formula: 1/v − 1/u = 1/f. Note the minus sign, unlike the mirror equation.
  • Linear magnification of a lens is m = h′/h = v/u, again without the minus sign used for mirrors.
  • When a lens is placed in a liquid, n₂₁ becomes n_lens/n_liquid, so the focal length changes. If the liquid's n equals the lens's n, the lens has no effect (f becomes infinite); if the liquid's n is larger, a convex lens behaves as a diverging lens.
  • A convex lens gives a real inverted image for objects beyond F and a virtual erect enlarged image for objects between F and the lens; a concave lens always gives a virtual, erect, diminished image of a real object.
Take the whole lessonThin lenses: lens maker's formula and thin lens formula, with the notes, the story, a mind map, common mistakes and exam questions.Open

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