Home
Class 12
PHYSICS
A parallel beam of light is incident nor...

A parallel beam of light is incident normally on the flat surface of a hemisphere of radius `6 cm` and refractive index `1.5`, placed in air as shown in figure (i). Assume paraxial ray approxiamtion.
.

A

The rays are focused at `12 cm` from the point `P` to the right, in the solutation as shown in figure (i)

B

The rays are focused at `16 cm` from the point `P` to the right, in the situation as shown in figure (i).

C

If the rays are incident at the curved surface (figure (ii)) then these are focused at distance `18 cm` from point `P` to the right

D

If the ray are incident at the curved surface (figure(ii)) then these are focused at distance `14 cm` from point `P` to the right.

Text Solution

Verified by Experts

The correct Answer is:
A, D


As in figure (i), rays are parallel incident on curved part
Therefore `(1)/(v)-(3//2)/(infty)=(1-3//2)/(-6)`
`rArr v=12 cm`
For figure (ii), image created by curved part acts as object for the flat part.
For curved part
`(1.5)/(v)-(1)/(infty)=(0.5)/(6) rArr v=18 cm`
from falt surface, object is at `12 cm` to the right.
for flat part
`(1)/(v)-(1)/(8)=0 rArr (1)/(v)-(1)/(8) rArr v=8`
So distance of final image from `P=6 +8 = 14 cm`. (right)
Doubtnut Promotions Banner Mobile Dark
|

Topper's Solved these Questions

  • DAILY PRACTICE PROBLEM

    RESONANCE ENGLISH|Exercise DPP No.9|20 Videos
  • DAILY PRACTICE PROBLEM

    RESONANCE ENGLISH|Exercise DPP No.10|9 Videos
  • DAILY PRACTICE PROBLEM

    RESONANCE ENGLISH|Exercise DPP No.7|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

A parallel narrow beam of light is incident on the surface of a transparent hemisphere of radius R and refractive index mu=1.5 as shown. The position of the image formed by refraction at the image formed by refraction at the spherical surface only as

When a ray of light is incident normally on one refracting surface of an equilateral prism (Refractive index of the material of the prism =1.5

When a ray of light is incident normally on one refracting surface of an equilateral prism (Refractive index of the material of the prism =1.5 )

A ray of light is incident normally on one face of an equilateral prism of refractive index 1.5 . The angle of deviation is: (Given sin^-1.(2)/(3)=42^@ )

A ray of light is incident normally on one face of 30^(@) - 60^(@) - 90^(@) prism of refractive index 5/3 immersed in water of refractive index 4/3 as shown in figure .

A point object is placed at the center of a glass sphere of radius 6cm and refractive index 1.5. The distance of virtual image from the surface is

A light beam of diameter sqrt(3R) is incident symmetrically on a glass hemisphere of radius R and of refractive index n=sqrt(3) . Find radius of the beam at the base of hemisphere.

Consider a transparent homogenous hemisphere of refractive index n=2 in front of which a small object is placed in air as shown in figure.

A ray of light is incident normally on a glass slab of thickness 5 cm and refractive index 1.6. The time taken to travel by a ray from source to surface of slab is same as to travel through glass slab. The distance of source from the surface is

A narrow beam of monochromatic light, PQ, is incident normally on one face of an equiangular glass prism of refractive index 1.45 . When the prism is immersed in a certain liquid, the ray makes a grazing emergence along the other face (figure). Find the refractive index of this liquid .