Solid harmonics/Related Articles: Difference between revisions
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Latest revision as of 06:00, 20 October 2024
- See also changes related to Solid harmonics, or pages that link to Solid harmonics or to this page or whose text contains "Solid harmonics".
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- Angular momentum (quantum) [r]: A vector operator of which the three components have well-defined commutation relations. [e]
- Clebsch-Gordan coefficients [r]: appear in total angular momentum eigenstates when written in terms of angular momentum states of subsystems. [e]
- Gaussian type orbitals [r]: Functions used as atomic orbitals in the LCAO method for the computation of electron orbitals in molecules. [e]
- Hydrogen-like atom [r]: An atom, excluding hydrogen itself, with only one electron, having charge +(Z-1), where Z = atomic number. [e]
- Laplace expansion (potential) [r]: An expansion by means of which the determinant of a matrix may be computed in terms of the determinants of all possible smaller square matrices contained in the original. [e]
- Multipole expansion (interaction) [r]: A mathematical series representing a function that depends on angles, and frequently used in the study of electromagnetic, and gravitational fields, where the fields at distant points are given in terms of sources in a small region. [e]
- Multipole expansion of electric field [r]: an expansion in terms of powers of 1/R of an electric potential outside a charge distribution; R is the distance of a point outside to a point inside the charge distribution. [e]
- Slater orbital [r]: Functions used as atomic orbitals in the linear combination of atomic orbitals molecular orbital method. [e]
- Spherical harmonics [r]: A series of harmonic basis functions that can be used to describe the boundary of objects with spherical topology. [e]
- Orbital-angular momentum [r]: Conserved property of quantum mechanical system with full rotation symmetry; cross product of position and momentum. [e]
- Electron shell [r]: A group of electron orbitals that share the same principal quantum number (n). [e]