Depending on the positioning of the prism, it will merge the rainbow back together or spread the eight rays even further. Using this tactic, it is possible to concentrate light even further inwards, depending on how you orient the prism. If an edge is facing the light, it will spread. If a face is facing the light, it will converge.
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When a rainbow is shone into a prism, the different colors in the rainbow will separate even further as they pass through the prism. This is because the prism refracts, or bends, each color of light by a slightly different amount due to their different wavelengths. The result is a beautiful display of the individual colors that make up the rainbow.
Well, isn't that just a happy little accident waiting to happen! When you shine a rainbow into a prism, the light waves bend and separate into different colors, creating a beautiful spectrum of colors like a magical dance on canvas. It's like nature's way of showing us how colorful and wonderful the world can be.
When you shine a rainbow into a prism, the prism refracts the light, causing the different colors of the rainbow to separate further. This is because each color of light has a different wavelength, and thus each color bends at a slightly different angle as it passes through the prism. This phenomenon is known as dispersion, and it allows us to see the individual colors of the rainbow more distinctly.
Oh, dude, when you shine a rainbow into a prism, it's like a party for light! The prism will totally break up the rainbow into its individual colors, creating a beautiful spectrum. It's like the rainbow is showing off its true colors, literally.
In reverse ,when a rainbow incident on a prism by a proper angle (with critical angel) the seven colours merged together and makes white colour.
If you shine a rainbow nto a prism the rain bow will become larger like 2x the original rainbows size. 8^)
When light shines through a prism, it is refracted and dispersed into its component colors, creating a spectrum known as a rainbow. This happens because each color of light has a different wavelength and is bent at a different angle. The resulting spectrum shows the colors of the rainbow from red to violet.
When a bright light passes through a prism, it is refracted and dispersed into its component colors due to the different wavelengths of each color. This separation of colors creates a spectrum of colors known as a rainbow.
When light is shone through a glass prism, the light gets refracted, or bent, at different angles depending on the wavelength of the light. This causes the light to separate into its constituent colors, creating a rainbow spectrum known as a rainbow. This phenomenon is called dispersion, and it occurs because different colors of light travel at slightly different speeds in the prism.
A rainbow window prism creates a colorful display of light by refracting, or bending, sunlight as it passes through the prism. The prism separates the sunlight into its different colors, creating the familiar rainbow pattern.
When red light shines on a prism, it will refract and disperse into its component colors (red, orange, yellow, green, blue, indigo, violet) due to their different wavelengths. This creates a spectrum of colors known as a rainbow.