Light is an electromagnetic wave. it is under the spectrum of electromagnetic waves of range 400nm-750nm. below 400nm are IR radio waves etc. and above 750 are like Gamma Xray etc.
Every wavelength has different property and "energy". it effects differently on different type of chemicals , metals etc. So, different colors means different wavelengths and energy. and hence they have different effects.
Different frequencies of visible light are perceived as different colors.
Answer: The white colors have different speeds and not other electromagnetic waves because they are not usually consisted by more than one colors like the white colors. Answer: You are really confusing two different things. (1) In a vacuum, all electromagnetic waves travel at the same speed. That includes light of different colors. They all travel at the so-called "speed of light" - without further qualification, this term means "the speed of all electromagnetic waves in a vacuum", and this speed is approximately 300,000 km/sec. (2) In materials other than a vacuum (empty space), electromagnetic waves get slowed down - and the amount by which they slow down depends on the frequency. Thus, not only light of different colors will be slowed down by different amounts, but also radio waves, ultraviolet rays, etc., if they are able to pass through a material at all. For more information, do some reading - for example, on the Wikipedia - on "index of refraction", and on "speed of light".
A prism separates white light into its different colors through the process of refraction. When light enters the prism, each color (wavelength) of the light is refracted by a different amount due to its unique wavelength, causing them to separate and create a spectrum of colors.
Visible light waves are a form of electromagnetic radiation that can be seen by the human eye. They have wavelengths in the range of approximately 400 to 700 nanometers, and the different wavelengths correspond to different colors that we perceive in the world around us.
Visible light waves are the only electromagnetic waves we can see. We see these waves as the colors of the rainbow. Each color has a different wavelength. Red has the longest wavelength and violet has the shortest wavelength. When all the waves are seen together, they make white light.
Visble Light
Different frequencies of visible light are perceived as different colors.
Changing the frequency of light waves alters their color. Higher frequencies correspond to shorter wavelengths and bluer colors, while lower frequencies correspond to longer wavelengths and redder colors.
White light contains all the colors of a rainbow in the form of waves which have different wavelengths. So when light is passed through a prism, the waves appears to be scattered because some waves have less refraction and some waves have more refraction due to their wavelengths.
Radio waves are a type of electromagnetic radiation similar to visible light. If there were 2 light sources with different color light you would not have any problem seeing both colors. It is the same with radio waves on different wavelengths.
A diffraction grating separates white light into its component colors by bending and spreading the light waves. This creates a spectrum of colors, similar to a rainbow.
the color of light is determined by the ____ of the light waves A. medium B.speed C.frequency D. amplitude
When an object is in sunlight, it reflects some of the light that hits it. The color we see is the result of the reflected light waves. Different colors are absorbed by the object, and the color we see is the light waves that are reflected back to our eyes.
A soap bubble shows beautiful colors when illuminated by white light due to interference of light waves. The thin film of soap in the bubble reflects light waves at different angles, causing some waves to interfere constructively and others to interfere destructively. This interference results in the different colors observed on the bubble's surface.
Light is one form of waves.
Color light is determined by the frequency of the light waves. Different colors of light correspond to different frequencies of light waves. For example, red light has a lower frequency than blue light. The relationship between color light and frequency is that higher frequencies are associated with colors towards the violet end of the spectrum, while lower frequencies are associated with colors towards the red end.
The property of light waves that leads to the phenomenon of color is their wavelength. Different wavelengths of light correspond to different colors that we perceive. For example, shorter wavelengths correspond to colors like blue and violet, while longer wavelengths correspond to colors like red and orange.