Question:

The image of a small electric bulb fixed on the wall of a room is to be obtained on the opposite wall $4\, m$ away by means of a large convex lens. The maximum possible focal length of the lens required for this purpose will be:

Updated On: Jun 20, 2022
  • 0.5 m
  • 1.0 m
  • 1.5 m
  • 2.0 m
Hide Solution
collegedunia
Verified By Collegedunia

The Correct Option is B

Solution and Explanation

Let a large convex lens is placed between two walls at a distance x from wall on which an electric bulb is fixed. Using lens formula,


$ \frac{1}{f}=\frac{1}{v}-\frac{1}{u} $
Putting $ u=x $ and $ v=4-x $
$ \therefore $ $ \frac{1}{f}=\frac{1}{4-x}-\frac{1}{-x} $
Or $ \frac{1}{f}=\frac{x+4-x}{(4-x)(x)} $
Or $ \frac{1}{f}=\frac{4}{(4-x)(x)} $
Or $ f=\frac{(4-x)(x)}{4} $ .. (i)
Now magnification, $ m=\frac{v}{u}=\frac{4-x}{x} $
or $ 1=\frac{4-x}{x} $
or $ x=4-x $ or
$ 2x=4 $ or $ x=2m $
Hence, from equation (i),
$ f=\frac{(4-2)(2)}{4}=\frac{2\times 2}{4}=1m $
Was this answer helpful?
0
0

Concepts Used:

Spherical Lenses

Lenses that are made by combining two spherical transparent surfaces are called spherical lenses.  In general, there are two kinds of spherical lenses. Lenses that are made by joining two spherical surfaces that bulge outward are convex lenses, whereas lenses that are made by joining two spherical surfaces that curve inward are concave lenses.

Properties of Convex lens:

  1. In this, the lenses are thicker in the middle and thinner at the edges.
  2. They have a positive focal length.
  3. It intersects the incident rays towards the principal axis
  4. These lenses are used in the camera, focus sunlight, projector microscope, simple telescope, overhead projector, magnifying glasses, etc.

Properties of Concave lens:

  1. These lenses are thinner in the middle and thicker at the edges.
  2. They have a negative focal length.
  3. It parts the incident rays away from the principal axis.
  4. These are used in the glasses, spy holes, some telescopes in the doors, etc.