It's red.
Yes, the frequencies of light increase from red to violet. Red light has lower frequencies and longer wavelengths, while violet light has higher frequencies and shorter wavelengths. This is due to the relationship between frequency and wavelength in the electromagnetic spectrum.
Radiowaves have longer wavelengths than microwaves. Microwaves typically have wavelengths ranging from 1 millimeter to 1 meter, while radiowaves have wavelengths longer than 1 meter.
electromagnetic waves with a longer wavelength has
Red.
A filament radiates black-body radiation, with a range of wavelengths and colours. The intensity peaks at a wavelength that depends on the temperature. As the bulb is dimmed the peak radiation occurs at longer wavelengths and the colour goes from white to brown.
A redshift occurs when the wavelengths increase in objects by light or electromagnetic radiation levels in an object. In cosmological redshift also has to do with light; however, instead of an increase in wavelengths, there is an expansion of the universe.
The wavelengths of visible light are longer than ultraviolet wavelengths.
False. A prism separates the colors of sunlight into a spectrum because each wavelength of light has its own index of refraction, not because wavelengths are affected more or less by the prism.
have wavelengths that are longer than normal:)
Light energy with wavelengths longer than visible red is infrared light.
Wavelength is directly related to the color of light. Different colors are associated with different wavelengths of light. For example, red light has longer wavelengths compared to blue light. When light enters our eyes, the color we perceive is based on the wavelength of the light.
No, green wavelengths are shorter than orange wavelengths. In the electromagnetic spectrum, longer wavelengths correspond to colors such as red and orange, while shorter wavelengths correspond to colors like blue and green.