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  2. Electron scattering - Wikipedia

    en.wikipedia.org/wiki/Electron_scattering

    Single scattering: when an electron is scattered just once. Plural scattering: when electron(s) scatter several times. Multiple scattering: when electron(s) scatter many times over. The likelihood of an electron scattering and the degree of the scattering is a function of the specimen thickness and the mean free path. [6]

  3. Ramsauer–Townsend effect - Wikipedia

    en.wikipedia.org/wiki/Ramsauer–Townsend_effect

    The probability of scattering in such a system is defined as the number of electrons scattered, per unit electron current, per unit path length, per unit pressure at 0 °C, per unit solid angle. The number of collisions equals the total number of electrons scattered elastically and inelastically in all angles, and the probability of collision ...

  4. Compton scattering - Wikipedia

    en.wikipedia.org/wiki/Compton_scattering

    Compton scattering (or the Compton effect) is the quantum theory of high frequency photons scattering following an interaction with a charged particle, usually an electron. Specifically, when the photon hits electrons, it releases loosely bound electrons from the outer valence shells of atoms or molecules.

  5. Thomson scattering - Wikipedia

    en.wikipedia.org/wiki/Thomson_scattering

    Thomson scattering is a model for the effect of electromagnetic fields on electrons when the field energy is much less than the rest mass of the electron .In the model the electric field of the incident wave accelerates the charged particle, causing it, in turn, to emit radiation at the same frequency as the incident wave, and thus the wave is scattered.

  6. Photoelectric effect - Wikipedia

    en.wikipedia.org/wiki/Photoelectric_effect

    Electrons emitted in this manner are called photoelectrons. The phenomenon is studied in condensed matter physics, solid state, and quantum chemistry to draw inferences about the properties of atoms, molecules and solids. The effect has found use in electronic devices specialized for light detection and precisely timed electron emission.

  7. X-ray diffraction - Wikipedia

    en.wikipedia.org/wiki/X-ray_diffraction

    X-ray diffraction is a generic term for phenomena associated with changes in the direction of X-ray beams due to interactions with the electrons around atoms. It occurs due to elastic scattering, when there is no change in the energy of the waves. The resulting map of the directions of the X-rays far from the sample is called a diffraction pattern.

  8. Davisson–Germer experiment - Wikipedia

    en.wikipedia.org/wiki/Davisson–Germer_experiment

    Davisson began work in 1921 to study electron bombardment and secondary electron emissions. A series of experiments continued through 1925. Prior to 1923, Davisson had been working with Charles H. Kunsman on detecting the effects of electron bombardment on tungsten when they noticed that 1% of the electrons bounced straight back to the electron gun in elastic scattering. This sm

  9. Electron orbital imaging - Wikipedia

    en.wikipedia.org/wiki/Electron_orbital_imaging

    Electron orbital imaging is an X-ray synchrotron technique used to produce images of electron (or hole) orbitals in real space. It utilizes the technique of X-ray Raman scattering (XRS), [ 1 ] also known as Non-resonant Inelastic X-Ray Scattering (NIXS) [ 2 ] to inelastically scatter electrons off a single crystal .