Home
Class 12
PHYSICS
A transparent thin film of uniform thick...

A transparent thin film of uniform thickness and refractive index `n_(1)``=1.4` is coated on the convex spherical surface of radius R at one end of a long solid glass cylinder of refractive index `n_(2)``=1.5`, as shown in the figure. Rays of light parallel to the axis of the cylinder traversing through the film from air to glass get focused at distance `f_(1)` from the film, while rays of light traversing from glass to air get focused at distance `f_(2)` from the film, Then `

A

`|f_(1)|=3R`

B

`|f_(1)|=2.8R`

C

`|f_(2)|=2R`

D

`|f_(2)|=1.4 R`

Text Solution

Verified by Experts

The correct Answer is:
A, C

`(1)/(f_("film"))=(n_(1)-1)((1)/(R)-(1)/(R))`
`rArr f_("film")=infty` (infinite)
No effect of presence of film
From Air to Glass :
Using single spherical Refraction :-
`(n_(2))/(v)-(1)/(u)=(n_(2)-1)/(R),(1.5)/(v)-(1)/(prop)=(1.5-1)/(R)`
`v=3R f_(1)=3R`
From Glass to Air : -
Doubtnut Promotions Banner Mobile Dark
|

Topper's Solved these Questions

  • DAILY PRACTICE PROBLEM

    RESONANCE ENGLISH|Exercise DPP No.15|20 Videos
  • DAILY PRACTICE PROBLEM

    RESONANCE ENGLISH|Exercise DPP No.16|9 Videos
  • DAILY PRACTICE PROBLEM

    RESONANCE ENGLISH|Exercise DPP No.13|20 Videos
  • CURRENT ELECTRICITY

    RESONANCE ENGLISH|Exercise High Level Problems (HIP)|19 Videos
  • ELECTRO MAGNETIC WAVES

    RESONANCE ENGLISH|Exercise Exercise 3|27 Videos

Similar Questions

Explore conceptually related problems

List-I gives different lens configurations. The radius of curvature of each surface is R. Rays of light parallel to the axis of lens from left of lens traversing through the lens get focused at distance f from the lens. List-II gives corresponding values of magnitudes of f (mu represent refractive index):-

A ray of light 10^(-9) second to cross a glass slab of refractive index 1.5. The thickness of the slab will be

A double convex thin lens made of glass (refractive index mu = 1.5 ) has both radii of curvature of magnitude 20 cm . Incident light rays parallel to the axis of the lens will converge at a distance L such that

A double convex thin lens made of glass (refractive index mu = 1.5 ) has both radii of curvature of magnitude 20 cm . Incident light rays parallel to the axis of the lens will converge at a distance L such that

The refractive index of glass is 1.5. Find the speed of light in glass.

A ray of light is incident on the surface of a glass plate of refractive index sqrt(3) at the polarising angle . The angle of incidence and angle of refraction of the ray is

A ray of light falls on a glass plate of refractive index mu=1.5 . What is the angle of incidence of the ray if the angle between the reflected and refracted rays is 90^@ ?

A ray of light falls on a glass plate of refractive index mu=1.5 . What is the angle of incidence of the ray if the angle between the reflected and refracted rays is 90^@ ?

The refractive index of glass is 1.5. The speed of light in glass is

If a glass prism is kept in a liquid of the same refractive index as that of glass, will the ray of light bend (Fig. B)? Complete the path of the ray of light.