), omitting j because some languages do not distinguish between the letters "i" and "j". Orbitals for ℓ > 3 continue alphabetically (g, h, i, k. They are derived from the description by early spectroscopists of certain series of alkali metal spectroscopic lines as sharp, principal, diffuse, and fundamental. These names, together with the value of n, are used to describe the electron configurations of atoms. The simple names s orbital, p orbital, d orbital, and f orbital refer to orbitals with angular momentum quantum number ℓ = 0, 1, 2, and 3 respectively. Each such orbital can be occupied by a maximum of two electrons, each with its own projection of spin m s. Alternative to the magnetic quantum number, the orbitals are often labeled by the associated harmonic polynomials (e.g., xy, x 2 − y 2). Įach orbital in an atom is characterized by a set of values of the three quantum numbers n, ℓ, and m l, which respectively correspond to the electron's energy, angular momentum, and an angular momentum vector component ( magnetic quantum number). The term atomic orbital may also refer to the physical region or space where the electron can be calculated to be present, as predicted by the particular mathematical form of the orbital. This function can be used to calculate the probability of finding any electron of an atom in any specific region around the atom's nucleus. In atomic theory and quantum mechanics, an atomic orbital is a function describing the location and wave-like behavior of an electron in an atom. To see the elongated shape of ψ( x, y, z) 2 functions that show probability density more directly, see pictures of d-orbitals below. Each picture is domain coloring of a ψ( x, y, z) function which depend on the coordinates of one electron. The two colors show the phase or sign of the wave function in each region. The shapes of the first five atomic orbitals are: 1s, 2s, 2p x, 2p y, and 2p z.
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