quantum number - перевод на немецкий
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quantum number - перевод на немецкий

NOTATION FOR CONSERVED QUANTITIES IN PHYSICS AND CHEMISTRY
Quantum numbers; Quantum Numbers; Q number; Quantum numbers with spin-orbit interaction; Internal properties; Q-number; Additive quantum number; M Sub 5

quantum number         
Quantenzahl (Zahl die doppelt so hoch ist wie die Hälfte der möglichen Größen nach der Quantentheorie)
atomic number         
  • An explanation of the superscripts and subscripts seen in atomic number notation. Atomic number is the number of protons, and therefore also the total positive charge, in the atomic nucleus.
  • Russian chemist [[Dmitri Mendeleev]], creator of the periodic table.
  • [[Henry Moseley]] in his lab.
  • [[Niels Bohr]], creator of the [[Bohr model]].
NUMBER OF PROTONS FOUND IN THE NUCLEUS OF AN ATOM
Atom number; Atomic numbers; Atomic Number; Proton number; Z (Atomic number); Z (atomic number); Number of protons; Nuclear charge number
Atomzahl, Anzahl der Protonen eines Atomkerns
orbitale Quantenzahl      
orbit quantum number

Определение

quantum number
¦ noun Physics a number expressing the value of some property of a particle which occurs in quanta.

Википедия

Quantum number

In quantum physics and chemistry, quantum numbers describe values of conserved quantities in the dynamics of a quantum system. Quantum numbers correspond to eigenvalues of operators that commute with the Hamiltonian—quantities that can be known with precision at the same time as the system's energy—and their corresponding eigenspaces. Together, a specification of all of the quantum numbers of a quantum system fully characterize a basis state of the system, and can in principle be measured together.

An important aspect of quantum mechanics is the quantization of many observable quantities of interest. In particular, this leads to quantum numbers that take values in discrete sets of integers or half-integers; although they could approach infinity in some cases. This distinguishes quantum mechanics from classical mechanics where the values that characterize the system such as mass, charge, or momentum, all range continuously. Quantum numbers often describe specifically the energy levels of electrons in atoms, but other possibilities include angular momentum, spin, etc. An important family is flavour quantum numbers – internal quantum numbers which determine the type of a particle and its interactions with other particles through the fundamental forces. Any quantum system can have one or more quantum numbers; it is thus difficult to list all possible quantum numbers.