Each chemical element has a different spectrum; and each color has a specific wavelength.
yes, it's between red and yellow waves on the electromagnetic spectrum.
That means that both the frequency and the wavelength of microwaves are also between those of infrared and radio waves.
The list of electromagnetic spectrum with an increasing wavelength is given: Gamma rays X rays Ultra violet Visible Infra red Micro waves Radio waves. Now you yourself can pick the needed answer.
If you are referring to the oven, the answer could be yes, as the turn table moves. However if you are referring to the electromagnetic wave known as a microwave then this is a form of electromagnetic energy...
"Light" is a very narrow band of radiation in the electromagnetic spectrum - approximately 400 nanometers (nm) to 700 nm. It is located between ultraviolet and infrared radiation and is special because we have evolved the capability to see this radiation as the light that we know and all of its colors.
Visible light is a small section in the electromagnetic spectrum.
Visible light and infrared light are the parts of the electromagnetic spectrum that can be seen with the eye.
Different wavelengths on the spectrum are seen as different colors within the visible light section of the spectrum.
They all are electromagnetic waves
Visible light is a small section in the electromagnetic spectrum.
To learn how to read the electromagnetic spectrum effectively, one can study the different types of electromagnetic waves, their properties, and how they interact with matter. This can be done through textbooks, online resources, and hands-on experiments. Understanding the relationship between wavelength, frequency, and energy of electromagnetic waves is key to interpreting the spectrum. Practice and experimentation can help develop the skills needed to analyze and interpret data from the electromagnetic spectrum.
The band of the electromagnetic spectrum that has a wavelength between infrared and ultraviolet is the visible light spectrum. This is the portion of the electromagnetic spectrum that is visible to the human eye and includes colors such as red, green, and blue.
Actually, a radio wave is an electromagnetic wave( transverse, speed of 3.0x108, do not require a material medium to travel so can travel through a vacuum, carry no charge, can be produced and absorbed by matter and obey the laws of refraction and reflection) In the electromagnetic spectrum, radio waves have the longest wavelength and lowest frequency.
The relationship between wavelength and frequency in electromagnetic radiation is inverse - shorter wavelengths correspond to higher frequencies. Higher frequency radiation carries more energy, as energy is directly proportional to frequency in the electromagnetic spectrum.
Anything that can reflect light is only visible to an eye... others which cannot are dark..
Visible light falls between the wavelengths of 380 nm and 760 nm in the electromagnetic spectrum.
The energy of an electromagnetic wave is directly proportional to its frequency. This means that as the frequency of the wave increases, so does its energy. This relationship is described by Planck's equation E = h * f, where E is energy, h is Planck's constant, and f is frequency.