ionization - definição. O que é ionization. Significado, conceito
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O que (quem) é ionization - definição


Ionization         
  • polar regions]].
  • Avalanche effect in an electric field created between two electrodes. The original ionization event liberates one electron, and each subsequent collision liberates a further electron, so two electrons emerge from each collision: the ionizing electron and the liberated electron.
  • Ionization energies of neutral elements (predicted beyond 104)
  • Feynman diagram for the process of double ionization in an atom through re-scattering mechanism
  • Schematic presentation of lambda type population trapping. G is the ground state of the atom. 1 and 2 are two degenerate excited states. After the population is transferred to the states due to multiphoton resonance, these states are coupled through continuum c and the population is trapped in the superposition of these states.
  • i}}}} is the ionization potential of the atom.
PROCESS BY WHICH ATOMS OR MOLECULES ACQUIRE CHARGE BY GAINING OR LOSING ELECTRONS
Ionisation; Ionize; Ionized; Ionizing; Ionizes; Ionise; Ionised; Ionises; Adiabatic ionization; Ionising; Ionizations; Ionisations; Ionizational; Ionisational; Ionizable; Ionisable; Ionizability; Ionisability; Ionization efficiency
Ionization, or Ionisation is the process by which an atom or a molecule acquires a negative or positive charge by gaining or losing electrons, often in conjunction with other chemical changes. The resulting electrically charged atom or molecule is called an ion.
Ionize         
  • polar regions]].
  • Avalanche effect in an electric field created between two electrodes. The original ionization event liberates one electron, and each subsequent collision liberates a further electron, so two electrons emerge from each collision: the ionizing electron and the liberated electron.
  • Ionization energies of neutral elements (predicted beyond 104)
  • Feynman diagram for the process of double ionization in an atom through re-scattering mechanism
  • Schematic presentation of lambda type population trapping. G is the ground state of the atom. 1 and 2 are two degenerate excited states. After the population is transferred to the states due to multiphoton resonance, these states are coupled through continuum c and the population is trapped in the superposition of these states.
  • i}}}} is the ionization potential of the atom.
PROCESS BY WHICH ATOMS OR MOLECULES ACQUIRE CHARGE BY GAINING OR LOSING ELECTRONS
Ionisation; Ionize; Ionized; Ionizing; Ionizes; Ionise; Ionised; Ionises; Adiabatic ionization; Ionising; Ionizations; Ionisations; Ionizational; Ionisational; Ionizable; Ionisable; Ionizability; Ionisability; Ionization efficiency
·add. ·vt To separate (a compound) into ions, ·esp. by dissolving in water.
Ionizing         
  • polar regions]].
  • Avalanche effect in an electric field created between two electrodes. The original ionization event liberates one electron, and each subsequent collision liberates a further electron, so two electrons emerge from each collision: the ionizing electron and the liberated electron.
  • Ionization energies of neutral elements (predicted beyond 104)
  • Feynman diagram for the process of double ionization in an atom through re-scattering mechanism
  • Schematic presentation of lambda type population trapping. G is the ground state of the atom. 1 and 2 are two degenerate excited states. After the population is transferred to the states due to multiphoton resonance, these states are coupled through continuum c and the population is trapped in the superposition of these states.
  • i}}}} is the ionization potential of the atom.
PROCESS BY WHICH ATOMS OR MOLECULES ACQUIRE CHARGE BY GAINING OR LOSING ELECTRONS
Ionisation; Ionize; Ionized; Ionizing; Ionizes; Ionise; Ionised; Ionises; Adiabatic ionization; Ionising; Ionizations; Ionisations; Ionizational; Ionisational; Ionizable; Ionisable; Ionizability; Ionisability; Ionization efficiency
·add. ·p.pr. & ·vb.n. of Ionize.
Exemplos do corpo de texto para ionization
1. When charged particles pass through the detectors, ionization dislodges electrons, and strong electric fields inside the MRPCs cause ‘avalanches,‘ producing measurable signals.