Red light has a longer wavelength than blue light, (i.e. greater distance for one oscillation of red light compared to blue light) so there are less oscillations in the same period of time for red light, and thus red light has a lower frequency than blue light.
More concisely: Wavelength = Wavespeed / Frequency , where wavespeed is constant
So Frequency = Wavespeed / Wavelength
Therefore as wavelength increases, frequency decreases.
Make sense?
Jack
No, violet light has a higher frequency than green light. Violet light has a shorter wavelength and higher energy compared to green light.
Green light has a moderate frequency compared to other colors in the visible light spectrum. It falls between blue and yellow light in terms of frequency.
Green light has higher energy than red light. This is because green light has a shorter wavelength and higher frequency compared to red light.
Blue light has a lower frequency than violet light. Violet light has the highest frequency in the visible spectrum, while blue light has a slightly lower frequency than violet light but higher than green light.
Yellow light has a slightly higher frequency than green light. In the electromagnetic spectrum, yellow light has a frequency of around 5 x 10^14 Hz, while green light has a frequency of approximately 6 x 10^14 Hz.
No, violet light has a higher frequency than green light. Violet light has a shorter wavelength and higher energy compared to green light.
Green light has a moderate frequency compared to other colors in the visible light spectrum. It falls between blue and yellow light in terms of frequency.
No, red light is lower frequency than green light.
Green light has higher energy than red light. This is because green light has a shorter wavelength and higher frequency compared to red light.
Blue light has a lower frequency than violet light. Violet light has the highest frequency in the visible spectrum, while blue light has a slightly lower frequency than violet light but higher than green light.
Yellow light has a slightly higher frequency than green light. In the electromagnetic spectrum, yellow light has a frequency of around 5 x 10^14 Hz, while green light has a frequency of approximately 6 x 10^14 Hz.
Green light has a higher frequency than red light because it has a shorter wavelength. In the electromagnetic spectrum, shorter wavelengths correspond to higher frequencies. This means that green light waves oscillate more times per second compared to red light waves.
Yellow light has a higher frequency than red light. In the visible light spectrum, colors with shorter wavelengths have higher frequencies. Yellow light falls between green and orange in terms of wavelength and frequency, while red light has longer wavelengths and lower frequencies compared to yellow light.
Green light. If you use the abbreviation ROY G. Biv ( red, orange yellow, green, blue, indigo, violet), you will always know that the red light has the longest wavelength and violet has the smallest wavelength. Wavelength and frequency are inversely proportional to one another. So if the wavelength is large, frequency is small, and when wavelength is small, frequency is large. Green light has a smaller wavelength than yellow. Likewise it has a higher frequency than yellow does. Therefore, green light has a higher frequency than yellow light.
No, green light has a higher frequency than yellow light. In the visible light spectrum, colors with shorter wavelengths, such as green, have higher frequencies than colors with longer wavelengths, such as yellow.
The frequency of a light wave is directly proportional to its energy. This means that as the frequency of a light wave increases, its energy also increases. In other words, light waves with higher frequencies have higher energy levels.
The color, the frequency, and the wavelength.