Red light is dispersed because it has a longer wavelength compared to other colors in the visible spectrum. This longer wavelength causes red light to be bent or scattered more as it travels through a medium, such as air or water, resulting in its dispersion.
Violet light is dispersed the most by a prism, followed by blue, green, yellow, orange, and red. This dispersion is due to the different wavelengths of light being bent at different angles as they pass through the prism.
Red light, which has the longest wavelength, bends the least when passing through a prism, while violet light, with the shortest wavelength, bends the most.
Red, orange yellow, green, blue, indigo, and violet.White light is made up of the visible spectrum of light, or all colours (wavelengths) of light that are visible to the human eye.The rainbow : red to violet.
A spectrum consists of a band of colors that range from red to violet, created when light is dispersed by a prism. The colors in a spectrum include red, orange, yellow, green, blue, indigo, and violet, each corresponding to a different wavelength of light.
Red light has a longer wavelength compared to other colors in the visible spectrum, which makes it less susceptible to scattering and dispersion. This longer wavelength allows red light to interact less with particles or obstacles in its path, resulting in minimal dispersion compared to shorter-wavelength colors like blue or violet.
Violet light is dispersed the most by a prism, followed by blue, green, yellow, orange, and red. This dispersion is due to the different wavelengths of light being bent at different angles as they pass through the prism.
lupins are dispersed by watering them and giving them light
Out of the visible colors, red. The lower the wavelength the less it is dispersed.
Red light, which has the longest wavelength, bends the least when passing through a prism, while violet light, with the shortest wavelength, bends the most.
The sun appears red in the morning due to the scattering of light by particles and gases in the Earth's atmosphere. This scattering causes shorter wavelengths of light, such as blue and green, to be dispersed, leaving longer wavelengths, like red and orange, to dominate the sky.
Red, orange yellow, green, blue, indigo, and violet.White light is made up of the visible spectrum of light, or all colours (wavelengths) of light that are visible to the human eye.The rainbow : red to violet.
A spectrum consists of a band of colors that range from red to violet, created when light is dispersed by a prism. The colors in a spectrum include red, orange, yellow, green, blue, indigo, and violet, each corresponding to a different wavelength of light.
Red light has a longer wavelength compared to other colors in the visible spectrum, which makes it less susceptible to scattering and dispersion. This longer wavelength allows red light to interact less with particles or obstacles in its path, resulting in minimal dispersion compared to shorter-wavelength colors like blue or violet.
The night sky can appear red due to the scattering of light by particles in the atmosphere, such as dust and pollutants. This scattering causes shorter blue and green wavelengths to be dispersed, leaving longer red wavelengths to dominate the sky's color.
The sky appears red at 2am due to the scattering of light by particles in the atmosphere, such as dust and pollutants. This scattering causes shorter blue and green wavelengths to be dispersed, leaving longer red wavelengths to dominate the sky's color.
When white light is passed through a prism, it is dispersed into its component colors, forming a spectrum. This spectrum consists of colors of different wavelengths ranging from red to violet.
The answer is colloid.