normal energy level - tradução para holandês
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normal energy level - tradução para holandês

DIFFERENT STATES OF QUANTUM SYSTEMS
Quantum energy level; Energy state; Quantum levels; Energy levels; Molecular energy state; Electronic state; Energy Level; Energy level (quantum mechanics); Quantized electronic structure; Atomic energy level; Quantum energy; Quantum Energy; Energy State; Quantized energy levels of atoms
  • ν]]''}}
  • [[Wavefunction]]s of a [[hydrogen]] atom, showing the probability of finding the electron in the space around the nucleus. Each stationary state defines a specific energy level of the atom.

normal energy level      
normaal energiepeil
spirit level         
  • Machinists precision level
  • Carpenter's bulls-eye level
  • Measuring elevation with a line level. Historical archaeology at the old Champoeg townsite, Champoeg, Oregon (USA) 1973 (2149089991)
  • bull's eye spirit level]] mounted in a camera tripod
  • Torpedo level
  • Modern automatic level in use on a construction site
INSTRUMENT WITH A SEALED TUBE OF LIQUID, DESIGNED TO INDICATE WHETHER A SURFACE IS HORIZONTAL (LEVEL) OR VERTICAL (PLUMB)
Waterlevel; Spirit-level; Bubble level; Torpedo level; Tube level; Level (tool); Spirit Level; Carpenter's level
waterpeil (instrument dat met water volloopt en binnenin zorgen luchtbellen voor evenwicht)
ionization energy         
  • p-orbital]].
  • Binding energies of specific atomic orbitals as a function of the atomic number. Because of the increasing number of protons, electrons occupying the same orbital are more tightly bound in heavier elements.
  • potential energy curve]] of the neutral molecule, and the upper curve is for the positive ion with a longer bond length. The blue arrow is vertical ionization, here from the ground state of the molecule to the v=2 level of the ion.
  • Ionization energies peak in noble gases at the end of each period in the periodic table of elements and, as a rule, dip when a new shell is starting to fill.
  • alt=
MINIMUM AMOUNT OF ENERGY REQUIRED TO REMOVE AN ELECTRON FROM AN ATOM OR MOLECULE IN THE GASEOUS STATE
First ionization energy; Ionisation energy; Ionisation enthalpy; Ionization enthalpy; Electron binding energy; Ionization Potential; Second ionization energy; Ionisation potential; Ionization potential; Ionisation energies; Ionization Energy; Ionization energies
ionisatie-energie (vereiste energie om elektron van atoom te bevrijden)

Definição

spirit level
¦ noun a device consisting of a sealed glass tube partially filled with alcohol or other liquid, containing an air bubble whose position reveals whether a surface is perfectly level.

Wikipédia

Energy level

A quantum mechanical system or particle that is bound—that is, confined spatially—can only take on certain discrete values of energy, called energy levels. This contrasts with classical particles, which can have any amount of energy. The term is commonly used for the energy levels of the electrons in atoms, ions, or molecules, which are bound by the electric field of the nucleus, but can also refer to energy levels of nuclei or vibrational or rotational energy levels in molecules. The energy spectrum of a system with such discrete energy levels is said to be quantized.

In chemistry and atomic physics, an electron shell, or principal energy level, may be thought of as the orbit of one or more electrons around an atom's nucleus. The closest shell to the nucleus is called the "1 shell" (also called "K shell"), followed by the "2 shell" (or "L shell"), then the "3 shell" (or "M shell"), and so on farther and farther from the nucleus. The shells correspond with the principal quantum numbers (n = 1, 2, 3, 4 ...) or are labeled alphabetically with letters used in the X-ray notation (K, L, M, N...).

Each shell can contain only a fixed number of electrons: The first shell can hold up to two electrons, the second shell can hold up to eight (2 + 6) electrons, the third shell can hold up to 18 (2 + 6 + 10) and so on. The general formula is that the nth shell can in principle hold up to 2n2 electrons. Since electrons are electrically attracted to the nucleus, an atom's electrons will generally occupy outer shells only if the more inner shells have already been completely filled by other electrons. However, this is not a strict requirement: atoms may have two or even three incomplete outer shells. (See Madelung rule for more details.) For an explanation of why electrons exist in these shells see electron configuration.

If the potential energy is set to zero at infinite distance from the atomic nucleus or molecule, the usual convention, then bound electron states have negative potential energy.

If an atom, ion, or molecule is at the lowest possible energy level, it and its electrons are said to be in the ground state. If it is at a higher energy level, it is said to be excited, or any electrons that have higher energy than the ground state are excited. An energy level is regarded as degenerate if there is more than one measurable quantum mechanical state associated with it.