Question 50 of 60
Q.(a) Write the relation between apparent depth and real depth with refractive index of dense medium. [1]
(b) Two immiscible liquids of refractive indices μ₁ and μ₂ are placed in a vessel. The depths of the two liquids are d₁ and d₂ respectively. There is a point at the bottom of the vessel. Show that the apparent depth of the point when viewed vertically from above is given by d₁/μ₁ + d₂/μ₂. [2]
OR
(a) What is Raman effect? [1]
(b) The refractive indices of Flint glass prism for violet and red colours are 1.662 and 1.644 respectively and refracting angle of prism is 10°. Calculate the dispersive power and the angular dispersion of Flint glass prism with respect to the two colours. [1+1]
West Bengal WbchseWest Bengal HS (WBCHSE) Board 2024Subjective· 3mImportance★★★★★
83% · 50/60 Questions
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Start your 14-day free trial to unlock the full solution →Each liquid layer independently shortens the apparent depth of what lies below it by a factor of its own refractive index; the two contributions simply add for a stack of two liquids.
- Relation between apparent depth and real depth: When an object at the bottom of a denser medium (refractive index ) is viewed vertically from a rarer medium (e.g. air) above, the object appears to be at a smaller (apparent) depth than its actual (real) depth, because light bends away from the normal as it exits into the rarer medium. For near-normal viewing: i.e. apparent depth .
- Two immiscible liquids: Let a point O lie at the bottom of a vessel containing two immiscible liquid layers: the lower layer of depth and refractive index (in contact with O), and the upper layer of depth and refractive index (in contact with air above). Step 1 — Apparent position due to the lower liquid alone: Viewed from within the upper liquid, O (real depth below the lower liquid's top surface) appears raised, at apparent depth (using the rule for refraction at the interface between the lower liquid, index , and the upper liquid — treating the upper liquid as if it were the "rarer" reference medium immediately above that interface; this is the standard successive-refraction approximation used at this level). Step 2 — Apparent position due to the upper liquid: …
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