$(a)$ Explain the following terms related to spherical lenses:
$(i)$ Optical centre
$(ii)$ Centres of curvature
$(iii)$ Principal axis
$(iv)$ Aperture
$(v)$ Principal focus
$(vi)$ Focal length
$(b)$ $A$ converging lens has a focal length of $12 \, cm$. Calculate at what distance should the object be placed from the lens so that it forms an image at $48 \, cm$ on the other side of the lens.

Vedclass pdf generator app on play store
Vedclass iOS app on app store
(N/A) Definitions:
$(i)$ Optical centre: The central point of a lens through which a ray of light passes without any deviation.
$(ii)$ Centres of curvature: The centres of the two imaginary spheres of which the lens surfaces are parts.
$(iii)$ Principal axis: An imaginary line passing through the optical centre and the centres of curvature of the lens.
$(iv)$ Aperture: The effective diameter of the circular outline of a spherical lens.
$(v)$ Principal focus: $A$ point on the principal axis where light rays parallel to the principal axis converge (in convex lens) or appear to diverge (in concave lens) after refraction.
$(vi)$ Focal length: The distance between the optical centre and the principal focus of the lens.
$(b)$ Given: Focal length $f = +12 \, cm$ (for a converging lens),Image distance $v = +48 \, cm$ (real image on the other side).
Using the lens formula: $\frac{1}{f} = \frac{1}{v} - \frac{1}{u}$
$\frac{1}{12} = \frac{1}{48} - \frac{1}{u}$
$\frac{1}{u} = \frac{1}{48} - \frac{1}{12}$
$\frac{1}{u} = \frac{1 - 4}{48} = \frac{-3}{48} = -\frac{1}{16}$
Therefore,$u = -16 \, cm$. The object should be placed at a distance of $16 \, cm$ in front of the lens.

Explore More

Similar Questions

As the velocity of light increases,the refractive index of the medium decreases. Light enters from air to water having a refractive index of $4/3$. Find the speed of light in water. The speed of light in vacuum is $3 \times 10^{8} \text{ m s}^{-1}$.

$(a)$ What should be the position of the object,when a concave mirror is to be used $(i)$ as a shaving mirror,and $(ii)$ in torches producing a parallel beam of light? $(b)$ $A$ man standing in front of a mirror finds his image having a very small head and legs of normal size. What type of mirror is used in designing such a mirror?

Where is the image formed when an object is placed between the principal focus $(F)$ and the center of curvature $(C)$ of a concave mirror?

$A$ ray is incident along $ACB$ on a spherical mirror,where $C$ is the centre of curvature. In which direction will the ray be reflected?

You are given water,mustard oil,glycerine,and kerosene. In which of these media would a ray of light incident obliquely at the same angle bend the most?

Vedclass Products

For Students

Vedclass Test Series

Mock tests in real JEE/NEET style with performance analysis. 5-day free trial.

Start Free Trial
For Teachers

Exam Paper Generator

Generate Set A/B/C/D exam papers from 7.5L+ questions in 2 minutes. 3 chapters free.

Try Free
For Institutes

Online Exam Module

Live online exams with unlimited students, 360° analytics & white-label branding.

See Demo