We call that ionizing radiation.
From energy in photons
No. It is electromagnetic radiation, beyond the violet end of the visible spectrum.
Gamma rays have the most energy per photon.
Electrons are not directly involved in the creation of alpha, beta, or gamma radiation. Alpha radiation consists of helium nuclei (2 protons and 2 neutrons), beta radiation is made of electrons (beta-minus) or positrons (beta-plus), and gamma radiation is a high-energy electromagnetic radiation.
The study of electromagnetic radiation is important because it helps us understand how electrons move and behave in the atom. By analyzing the different energies of electromagnetic radiation absorbed or emitted by electrons, we can determine their specific energy levels or orbits within the atom. This knowledge is crucial for understanding the arrangement of electrons in atomic orbitals and the overall structure of the atom.
A photon is a particle of electromagnetic radiation with no mass that carries a quantum of energy. It is the fundamental unit of light and other forms of electromagnetic radiation.
Electromagnetic radiation
From energy in photons
Gamma rays have the highest energy of all electromagnetic radiation wavelengths.
No. It is electromagnetic radiation, beyond the violet end of the visible spectrum.
Gamma rays.
Electromagnetic radiation carries energy in the form of waves that consist of oscillating electric and magnetic fields. The amount of energy carried by electromagnetic radiation depends on the frequency of the waves - with higher frequencies carrying more energy.
electromagnetic radiation is caused by radiant energy generated by accelerating electrons of photons travelling as waves.
Electromagnetic radiation carries energy in the form of photons, with higher energy corresponding to higher frequency. The energy of electromagnetic radiation can be quantified using Planck's equation, E = hf, where E is energy, h is Planck's constant, and f is frequency. Different types of electromagnetic radiation, such as gamma rays and radio waves, have varying energy levels.
Gamma rays have the most energy per photon.
Electromagnetic radiation has the lowest energy due to its long wavelength and low frequency. In the electromagnetic spectrum, radiation with longer wavelengths, such as radio waves, carries lower energy compared to higher-frequency radiation like gamma rays.
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.