microwave
For the same speed of a wave (I suppose you are referring to electromagnetic waves), the highest frequency corresponds to the shortest wavelength.For the same speed of a wave (I suppose you are referring to electromagnetic waves), the highest frequency corresponds to the shortest wavelength.For the same speed of a wave (I suppose you are referring to electromagnetic waves), the highest frequency corresponds to the shortest wavelength.For the same speed of a wave (I suppose you are referring to electromagnetic waves), the highest frequency corresponds to the shortest wavelength.
The natural frequency of atoms in glass typically falls in the infrared part of the spectrum. Infrared radiation corresponds to vibrational modes of the atoms in a material. The frequencies of energy in the visible and ultraviolet parts of the spectrum are generally due to electronic transitions in atoms or molecules rather than vibrational modes.
Both energies as well as rotational energy are quantized. Electronic energy transitions are associated with short wave radiation, vibrational energy transitions - infrared region and rotational energy with the microwave region
As the frequency of electromagnetic radiation decreases, its wavelength increases. This is because wavelength and frequency are inversely proportional in electromagnetic waves, as defined by the equation speed = frequency x wavelength. A lower frequency corresponds to a longer wavelength in the electromagnetic spectrum.
I think in the ultraviolet region of the electromagnetic spectrum.
300E9 corresponds to a frequency of 300 GHz, which falls in the microwave region of the electromagnetic spectrum.
The frequency of an electromagnetic wave is inversely proportional to its wavelength, meaning a higher frequency corresponds to a shorter wavelength. The angular velocity of an electromagnetic wave is directly proportional to its frequency, so an increase in frequency will lead to an increase in angular velocity.
Electromagnetic radiation with a frequency of 0.6GHz is ultra-high frequency Microwaves. It has a wavelength of 50cm.
Extremely low frequency (ELF) radio waves. They can have wavelengths of over 60,000 miles (100,000 km) and frequencies from 3 to 300 Hz.
As the wavelength of an electromagnetic wave decreases, the frequency of the wave increases. This means that the energy carried by the wave also increases, as energy is directly proportional to frequency. Therefore, shorter wavelength corresponds to higher frequency and energy in an electromagnetic wave.
Microwave ovens use electromagnetic radiation in the microwave region of the electromagnetic spectrum. Specifically, they typically operate at a frequency of 2.45 GHz, which corresponds to a wavelength of around 12 cm.
Geomagnetic waves are thought to be the lowest frequency (and, therefore, the longest wavelength) electromagnetic waves in the universe. They are generated by movements in planetary structures that modulate a planet's magnetic field to create the wave. Certainly lower frequency electromagnetic waves could be generated, but they would be artificial. A link is provided for some useful information.