Violet light is faster than red light because violet light has a shorter wavelength and higher frequency, allowing it to travel faster through a medium.
Red light has a longer wavelength and lower frequency compared to violet light. This results in red light having lower energy than violet light. In terms of human perception, red light appears less energetic and more calming compared to the higher energy and stimulating violet light.
Red light travels more slowly in glass than violet light. This is because the speed of light in a medium is inversely proportional to its wavelength, and red light has a longer wavelength compared to violet light.
Red light has a longer wavelength than violet light. Red light has wavelengths around 620-750 nanometers, while violet light has wavelengths around 380-450 nanometers.
Violet light has a shorter wavelength and higher frequency than red light. Energy of a photon is directly proportional to its frequency, so violet light has more energy than red light.
Yes, the frequency of light increases from red to violet. Red light has the longest wavelength and lowest frequency, while violet light has the shortest wavelength and highest frequency in the visible spectrum.
Red light has a longer wavelength and lower frequency compared to violet light. This results in red light having lower energy than violet light. In terms of human perception, red light appears less energetic and more calming compared to the higher energy and stimulating violet light.
Red light travels more slowly in glass than violet light. This is because the speed of light in a medium is inversely proportional to its wavelength, and red light has a longer wavelength compared to violet light.
Red light has a longer wavelength than violet light. Red light has wavelengths around 620-750 nanometers, while violet light has wavelengths around 380-450 nanometers.
The frequency of red light is lower than the frequency of violet light. This is because red light has a longer wavelength, which corresponds to a lower frequency. This difference in frequency is what causes red light to be more common than violet light in natural light sources.
Red and violet are both visible to the common eye. The red and violet light are both forms of visible light, are electromagnetic waves, and are able to be polarized.
Violet light has a shorter wavelength and higher frequency than red light. Energy of a photon is directly proportional to its frequency, so violet light has more energy than red light.
Yes, the frequency of light increases from red to violet. Red light has the longest wavelength and lowest frequency, while violet light has the shortest wavelength and highest frequency in the visible spectrum.
In case of visible region, VIBGYOR, violet has the maximum bending.
Red light and violet light travel at the same speed in a vacuum, however, they travel at different speeds relative to each other when traveling through any medium other than a vacuum.In most media, violet light has a higher index of refraction (usually denoted with the letter n) than red light. The higher the index of refraction, the slower the light goes compared to its speed in a vacuum. This relationship is governed by the following equation: v = c/n where v is the speed of light in a particular medium, n is the index of refraction of light in that medium, and c is the speed of light in a vacuum. Since red light has a smaller n than violet light in most media, red light travels faster than violet light in most media.The index of refraction is determined by solving Maxwell's equations for a particular frequency and a particular medium using specific boundary conditions.Read more at the link I provided below.http://wiki.answers.com/Q/Which_travels_faster_red_light_or_violet_light#ixzz17j1yTzi6
As we move from red to violet wavelengths, the frequency and energy of light increases. Red light has a longer wavelength and lower frequency, while violet light has a shorter wavelength and higher frequency. This progression creates the visible spectrum of light, with red at one end and violet at the other.
Red & violet.
none if the source is purely violet and the filter is 100% red.