The frequency of the EM wave determines the amount of energy it contains. Therefore, different colors of light have different frequencies and amount of energy.
The reason behind the difference in color between purple light and red light is due to their different wavelengths. Purple light has a shorter wavelength and higher frequency, while red light has a longer wavelength and lower frequency. This difference in wavelength causes our eyes to perceive them as different colors.
The main difference between red, green, and blue light is their wavelengths and the colors they appear as to the human eye. Red light has the longest wavelength and appears red, green light has a medium wavelength and appears green, while blue light has the shortest wavelength and appears blue. These colors are primary colors that can be combined to create a wide range of other colors.
Different colors of light correspond to different wavelengths of light. For example, red light has a longer wavelength compared to blue light. This difference in wavelength determines the color that our eyes perceive.
the difference is that white light is a mixture of the seven spectrum colors but when refracted (separated by a transparent object) it splits again into seven colors striking at different angles that's why they look like one.one color above others.so the difference is that spectrum is a number of split colors striking at different angles but white light is the mixture of those colors.
Additive color is created by combining different colors of light, such as on a computer screen, where red, green, and blue light are mixed to create various colors. Subtractive color is created by mixing pigments or dyes, such as in printing or painting, where colors are subtracted from white light to create different hues.
The reason behind the difference in color between purple light and red light is due to their different wavelengths. Purple light has a shorter wavelength and higher frequency, while red light has a longer wavelength and lower frequency. This difference in wavelength causes our eyes to perceive them as different colors.
The main difference between red, green, and blue light is their wavelengths and the colors they appear as to the human eye. Red light has the longest wavelength and appears red, green light has a medium wavelength and appears green, while blue light has the shortest wavelength and appears blue. These colors are primary colors that can be combined to create a wide range of other colors.
Different colors of light correspond to different wavelengths of light. For example, red light has a longer wavelength compared to blue light. This difference in wavelength determines the color that our eyes perceive.
the difference is that white light is a mixture of the seven spectrum colors but when refracted (separated by a transparent object) it splits again into seven colors striking at different angles that's why they look like one.one color above others.so the difference is that spectrum is a number of split colors striking at different angles but white light is the mixture of those colors.
Additive color is created by combining different colors of light, such as on a computer screen, where red, green, and blue light are mixed to create various colors. Subtractive color is created by mixing pigments or dyes, such as in printing or painting, where colors are subtracted from white light to create different hues.
Additive colors are created by combining different colors of light, such as in a computer screen or television. Subtractive colors are created by mixing pigments or dyes, like in painting or printing. Additive colors combine to create white light, while subtractive colors combine to create black or dark colors.
Additive colors are created by combining different colored lights, such as on a screen, where mixing red, green, and blue light creates white light. Subtractive colors are created by mixing pigments or dyes, where combining cyan, magenta, and yellow pigments absorbs light and creates black.
Wavelength Frequency and Photon Energy
Different Colors Of Light Travel At Different Speeds.
Additive color models involve combining different colors of light to create new colors, as seen in electronic displays. Subtractive color models involve mixing pigments or dyes to absorb certain colors of light and create new colors, as seen in printing.
Dispersion refers to the separation of different wavelengths of light as they travel through a medium, causing them to spread out. Spectrum refers to the range of colors produced when white light is separated into its component colors through dispersion. In essence, dispersion causes the formation of a spectrum of colors.
Subtractive color is when colors are created by mixing pigments together, such as in painting or printing. Additive color is when colors are created by combining different light sources, such as in digital displays.