the maximum distance that can be travelled without dispersion increases with ___________ in wavelength.
Question
The maximum distance that can be travelled without dispersion increases with ___________ in wavelength.
Solution
The maximum distance that can be travelled without dispersion increases with an increase in wavelength.
Here's a step-by-step explanation:
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Dispersion in optics refers to the phenomenon where light of different wavelengths travels at different speeds when passing through a medium, causing the light to spread out or "disperse".
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The speed at which light of a particular wavelength travels through a medium is determined by the medium's refractive index for that wavelength. The refractive index is a measure of how much the light is slowed down compared to its speed in a vacuum.
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The refractive index of most materials changes with the wavelength of the light, a phenomenon known as dispersion. This means that light of different wavelengths will travel at different speeds through the material, causing the light to spread out or "disperse".
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Longer wavelengths of light are generally less affected by dispersion than shorter wavelengths. This means that light of a longer wavelength can travel a greater distance through a medium before it begins to disperse.
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Therefore, the maximum distance that can be travelled without dispersion increases with an increase in wavelength.
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