Cesium 133 is the stable isotope of the family of cesium isotopes and thus has no nuclear radiation breaking out of its nucleus. The only radiation from cesium 133 would be an emission spectra data in the blue visible light zone with a few less intense lines across the visible spectrum.
The electromagnetic spectrum is a continuum. The least energetic type of radiation may be found in what is known as "extremely low frequency" radiation (ELF). This is radiation with a frequency in the range 3-30 Hertz. ELF radiation can penetrate seawater and so is particularly useful for communicating with submarines.
The key property that differentiates infrared and ultraviolet radiation is their frequency or wavelength. Infrared radiation has longer wavelengths and lower frequencies compared to ultraviolet radiation. This difference in frequency and wavelength determines the energy levels and interactions of each type of radiation with matter.
This type of radiation would be classified as radio waves. Radio waves have long wavelengths and low frequencies, making them suitable for communication and broadcasting purposes.
No, gamma rays have a high frequency and a short wavelength compared to other forms of electromagnetic radiation, such as visible light. They are the most energetic and penetrating type of electromagnetic radiation.
Gamma radiation is the fastest type of radiation because it consists of high-energy electromagnetic waves. These waves have the shortest wavelength and highest frequency, allowing them to travel at the speed of light and penetrate materials easily.
The radiation emited is gamma ray
Radio frequency radiation can be defracted by hills.
It is gamma radiation.
The electromagnetic spectrum is a continuum. The least energetic type of radiation may be found in what is known as "extremely low frequency" radiation (ELF). This is radiation with a frequency in the range 3-30 Hertz. ELF radiation can penetrate seawater and so is particularly useful for communicating with submarines.
If the gamma rays and X-rays have the same frequency, the electron will have the same energy regardless of which type of radiation is interacting with it. The energy of the electron is determined by the frequency of the radiation it absorbs, not the type of radiation.
Electromagnetic radiation in the frequency range between roughly 0.5 - 100 GHz.Loosely known as "radio".
The key property that differentiates infrared and ultraviolet radiation is their frequency or wavelength. Infrared radiation has longer wavelengths and lower frequencies compared to ultraviolet radiation. This difference in frequency and wavelength determines the energy levels and interactions of each type of radiation with matter.
This type of radiation would be classified as radio waves. Radio waves have long wavelengths and low frequencies, making them suitable for communication and broadcasting purposes.
UV, or "ultraviolet" radiation from the Sun. UV radiation has a higher frequency and shorter wavelength than visible light does, and carries more energy.
No, gamma rays have a high frequency and a short wavelength compared to other forms of electromagnetic radiation, such as visible light. They are the most energetic and penetrating type of electromagnetic radiation.
Gamma radiation is the fastest type of radiation because it consists of high-energy electromagnetic waves. These waves have the shortest wavelength and highest frequency, allowing them to travel at the speed of light and penetrate materials easily.
Gamma radiation is simple a very high-frequency form of electromagnetic radiation (essentially, a high-frequency form of light which is invisible to the human eye). As such it carries no electric charge; it is neutral.