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  2. Ionization - Wikipedia

    en.wikipedia.org/wiki/Ionization

    The ionization process is widely used in a variety of equipment in fundamental science (e.g., mass spectrometry) and in medical treatment (e.g., radiation therapy). It is also widely used for air purification, though studies have shown harmful effects of this application. [12] [13]

  3. Ionization energy - Wikipedia

    en.wikipedia.org/wiki/Ionization_energy

    The adiabatic ionization energy of a molecule is the minimum amount of energy required to remove an electron from a neutral molecule, i.e. the difference between the energy of the vibrational ground state of the neutral species (v" = 0 level) and that of the positive ion (v' = 0). The specific equilibrium geometry of each species does not ...

  4. Hypersonic speed - Wikipedia

    en.wikipedia.org/wiki/Hypersonic_speed

    The precise Mach number at which a craft can be said to be flying at hypersonic speed varies, since individual physical changes in the airflow (like molecular dissociation and ionization) occur at different speeds; these effects collectively become important around Mach 5–10.

  5. Dissociation (chemistry) - Wikipedia

    en.wikipedia.org/wiki/Dissociation_(chemistry)

    The dissociation of salts by solvation in a solution, such as water, means the separation of the anions and cations. The salt can be recovered by evaporation of the solvent. An electrolyte refers to a substance that contains free ions and can be used as an electrically conductive medium.

  6. Degree of ionization - Wikipedia

    en.wikipedia.org/wiki/Degree_of_ionization

    The terms fractional ionization and ionization fraction are also used to describe either the proportion of neutral particles that are ionized or the proportion of free electrons. [ 3 ] [ 4 ] When referred to an atom, "fully ionized" means that there are no bound electrons left, resulting in a bare nucleus .

  7. Photoinduced charge separation - Wikipedia

    en.wikipedia.org/wiki/Photoinduced_charge_separation

    An electron which is described as being at the "ground state" has a (negative) energy which is equal to the ionization energy of the atom. The electron will reside in this energy level under normal circumstances, unless the ground state is full, in which case additional electrons will reside in higher energy states.

  8. Common-ion effect - Wikipedia

    en.wikipedia.org/wiki/Common-ion_effect

    In chemistry, the common-ion effect refers to the decrease in solubility of an ionic precipitate by the addition to the solution of a soluble compound with an ion in common with the precipitate. [1] This behaviour is a consequence of Le Chatelier's principle for the equilibrium reaction of the ionic association / dissociation .

  9. Electron capture - Wikipedia

    en.wikipedia.org/wiki/Electron_capture

    An x-ray, equal in energy to the difference between the two electron shells, is emitted. Lower right: In the Auger effect, the energy absorbed when the outer electron replaces the inner electron is transferred to an outer electron. The outer electron is ejected from the atom, leaving a positive ion.