A diverging thin lens and a concave mirror have focal lengths of equal magnitude. An object is placed 3f/2 from the diverging lens, and the mirror is placed a distance 3f on the other side of the lens . Using Gaussian optics,determine the final image of the system , after two refractions (a) by a three-ray diagram and (b) by calculation .
Refraction of Light
Refraction is a change in the direction of light rays when they travel from one medium to another. It is the bending of light when it goes through different media.
Angle of Refraction
Light is considered by many scientists to have dual nature, both particle nature and wave nature. First, Particle nature is one in which we consider a stream of packets of energy called photons. Second, Wave nature is considering light as electromagnetic radiation whereas part of it is perceived by humans. Visible spectrum defined by humans lies in a range of 400 to 700 nm wavelengths.
Index of Refraction of Diamond
Diamond, the world’s hardest naturally occurring material and mineral known, is a solid form of the element carbon. The atoms are arranged in a crystal structure called diamond cubic. They exist in a huge variety of colours. Also, they are one of the best conductors of heat and have a very high melting point.
A diverging thin lens and a concave mirror have focal lengths of equal magnitude. An object is placed 3f/2 from the diverging lens, and the mirror is placed a distance 3f on the other side of the lens . Using Gaussian optics,determine the final image of the system , after two refractions (a) by a three-ray diagram and (b) by calculation .
Trending now
This is a popular solution!
Step by step
Solved in 2 steps with 1 images