The refractive index is inversely proportional to the wavelength, so the shorter the wavelength (the higher the frequency, or the more "blue" the light) the higher the refractive index. Conversely, the longer the wavelength (the lower the frequency, or the more "red" the light), the lower the refractive index.
Therefore as wavelength of blue in less the refractive index will be maximum.
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Violet light has the highest refractive index among the colors in the visible spectrum.
Yes, the refractive index of a material can vary with the color of light because different colors of light have different wavelengths, which interact with the material's atoms in different ways. This can lead to variations in the speed at which light travels through the material, resulting in a different refractive index for different colors.
What is a prism and how does it relate to the refractive index? Explain how the refractive index of a prism affects the bending of light. How can you experimentally determine the refractive index of a prism?
Actually we define refractive index with respect to a standard medium. Air has been taken as that standard. Hence refractive index of air is 1 and that of water is 1.33. But refractive index of water with respect to glass is 1.33/1.5 = 0.887 So, the answer is "water".
The refractive index of diamonds is approximately 2.42. This high refractive index contributes to the diamond's brilliance and sparkle when light enters and exits the stone.
Violet light has the highest refractive index among the colors in the visible spectrum.
It is usually expressed the other way: the ratio of the speed of light in a vacuum to the speed of light in a medium. In that case, it is called the "index of refraction".
No. A black hole does not have a refractive index. The bending of light around a black hole is due to gravity, which is entirely different from refraction.
Yes, the refractive index of a material can vary with the color of light because different colors of light have different wavelengths, which interact with the material's atoms in different ways. This can lead to variations in the speed at which light travels through the material, resulting in a different refractive index for different colors.
What is a prism and how does it relate to the refractive index? Explain how the refractive index of a prism affects the bending of light. How can you experimentally determine the refractive index of a prism?
Actually we define refractive index with respect to a standard medium. Air has been taken as that standard. Hence refractive index of air is 1 and that of water is 1.33. But refractive index of water with respect to glass is 1.33/1.5 = 0.887 So, the answer is "water".
The refractive index of diamonds is approximately 2.42. This high refractive index contributes to the diamond's brilliance and sparkle when light enters and exits the stone.
The speed of light in any medium isspeed of light in vacuum/refractive index of that medium.
Refractive Index= Speed of Light in Vaccum / Speed of Light in the material
You can find the refractive index of a solution using a refractometer, which measures how light bends as it passes through the solution. The refractive index is calculated by comparing the speed of light in a vacuum to the speed of light in the solution. The refractometer provides a numerical value that corresponds to the refractive index of the solution.
The refractive index or index of refraction of a substance is a measure of the speed of light in that substance. It is expressed as a ratio of the speed of light in vacuum relative to that in the considered medium.A simple, mathematical description of refractive index is as follows:n = velocity of light in a vacuum / velocity of light in mediumHence, the refractive index of water is 1.33, meaning that light travels 1.33 times as fast in a vacuum as it does in water.
Refractive index of the medium is defined as the ratio of the velocity of light in vacuum to that in the medium. No unit for refractive index.