Embibe Experts Solutions for Chapter: Ray Optics, Exercise 3: Exercise-3
Embibe Experts Physics Solutions for Exercise - Embibe Experts Solutions for Chapter: Ray Optics, Exercise 3: Exercise-3
Attempt the free practice questions on Chapter 30: Ray Optics, Exercise 3: Exercise-3 with hints and solutions to strengthen your understanding. Beta Question Bank for Engineering: Physics solutions are prepared by Experienced Embibe Experts.
Questions from Embibe Experts Solutions for Chapter: Ray Optics, Exercise 3: Exercise-3 with Hints & Solutions
A parallel beam of light is incident on a transparent sphere of refractive index ''. If the beam finally gets focussed at a point situated at a distance (radius of sphere) from the centre of the sphere, then find .

A thin equiconvex lens of glass of refractive index and of focal length in air is sealed into an opening at one end of a tank filled with water . On the opposite side of the lens, a mirror is placed inside the tank on the tank wall perpendicular to the lens axis, as shown in figure. The separation between the lens and the mirror is A small object is placed outside the tank in from of the lens at a distance of from the lens on its axis. Find the position (distance in ) of the image of the object formed by the systme from the lens).

An object is kept at a distance of from a thin lens and the image formed is real. If the object is kept at a distance of from the same lens the image formed is virtual. If the size of the image formed are equal, then find the focal length (in ) of the lens?

A point source of light is kept at a distance of, from a converging lens, on its optical axis. The focal length of the lens is, and its diameter is, . A screen is placed on the other side of the lens, perpendicular to the axis of lens, at a distance, from it. If the area of the illuminated part of the screen is , then find .

A lens placed between a candle and a screen forms a real triply magnified image of the candle on the screen. When the lens is moved away from the candle by without changing the position of the candle, a real image one-third the size of the candle is formed on the screen. Determine the focal length (in ) of the lens.

Consider a 'beam expander' which consists of two converging lenses of focal lengths and having a common optical axis. A laser beam of diameter is incident on the focal lens. Then what is the diameter (in ) of the final beam (see figure)?

A prism of refractive index has refracting angle . Find the angle of incidence (in degree) so that a ray suffers minimum deviation.

In the given figure the angle (in degree) between the velocity of object and image is . The value of is
