Skip to content
Question of 73

Q.Establish the relation among real depth, virtual depth and refractive index of medium for object placed in dense medium. OR Establish Lens maker's formula for convex lens.

Madhya Pradesh MpbseMP Board Higher Secondary 2025Subjective· 3mImportance★★★★★
0% · 0/73 Questions
🔒 Locked · start free trial →

You're viewing a preview — the full solution, concept, methods & PYQ mapping are locked.

Start your 14-day free trial to unlock the full solution →

For near-normal viewing, refractive index equals real depth divided by apparent depth; the lens maker's formula is 1/f = (n₂₁−1)(1/R₁−1/R₂).

Relation between real depth, virtual (apparent) depth and refractive index:

Consider an object O at real depth h at the bottom of a denser medium of refractive index n, viewed from a rarer medium (air, n = 1) nearly normally (small angle of viewing), appearing to be at apparent depth h′ (point I).

Using Snell's law at the surface: nsin⁡θ1=1⋅sin⁡θ2n\sin\theta_1 = 1 \cdot \sin\theta_2, where θ₁ is the angle in the denser medium and θ₂ in air. For paraxial (near-normal) rays, sin⁡θ≈tan⁡θ≈θ\sin\theta \approx \tan\theta \approx \theta. From the geometry, tan⁡θ1=x/h\tan\theta_1 = x/h and tan⁡θ2=x/h′\tan\theta_2 = x/h' (x = horizontal displacement of the ray from the normal). So:

nθ1=θ2  ⇒  nxh=xh′  ⇒  n=hh′=real depthapparent depthn\theta_1 = \theta_2 \;\Rightarrow\; n\dfrac{x}{h} = \dfrac{x}{h'} \;\Rightarrow\; n = \dfrac{h}{h'} = \dfrac{\text{real depth}}{\text{apparent depth}}

Since n > 1 for a denser medium, apparent depth is always less than real depth — this is why a pool of water looks shallower than it really is.

(OR) Lens maker's formula for a convex lens:

For a thin lens with two spherical refracting surfaces of radii R1R_1 and R2R_2 made of material of refractive index n2n_2 placed in a medium of index n1n_1, applying the single-surface refraction formula at each surface in turn and adding:

At first surface: n2v1−n1u=n2−n1R1\dfrac{n_2}{v_1} - \dfrac{n_1}{u} = \dfrac{n_2-n_1}{R_1}

…

Unlock everything free for 14 days

  • Full step-by-step solutions
  • Concept-first explanations
  • Methods, shortcuts & mistakes
  • PYQ mapping + timed mock tests

Full access for 14 days. No credit card required.