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Electrons spin angular momentum

Electron orbital angular momentum Electron spin angular momentum Resultant of orbital and spin momenta Molecular rotational angular momentum Nuclear spin angular momentum... [Pg.599]

In addition to the possible multipolarities discussed in the previous sections, internal-conversion electrons can be produced by an EO transition, in which no spin is carried off by the transition. Because the y-rays must carry off at least one unit of angular momentum, or spin, there are no y-rays associated with an EO transition, and the corresponding internal-conversion coefficients are infinite. The most common EO transitions are between levels with J = = where the other multipolarities caimot contribute. However, EO transitions can also occur mixed with other multipolarities whenever... [Pg.454]

This list of postulates is not complete in that two quantum concepts are not covered, spin and identical particles. In Section 1.7 we mentioned in passing that an electron has an intrinsic angular momentum called spin. Other particles also possess spin. The quantum-mechanical treatment of spin is postponed until Chapter 7. Moreover, the state function for a system of two or more identical and therefore indistinguishable particles requires special consideration and is discussed in Chapter 8. [Pg.85]

Section treats the spatial, angular momentum, and spin symmetries of the many-electron wavefunctions that are formed as antisymmetrized products of atomic or molecular orbitals. Proper coupling of angular momenta (orbital and spin) is covered here, and atomic and molecular term symbols are treated. The need to include Configuration Interaction to achieve qualitatively correct descriptions of certain species electronic structures is treated here. The role of the resultant Configuration Correlation Diagrams in the Woodward-Hoffmann theory of chemical reactivity is also developed. [Pg.3]

The magnetic properties of a molecule or ion result primarily from the interaction of the angular momentum and spin of the electrons and nuclei with the magnetic field. To deal with any quantum-mechanical theory of magnetic properties, we need to know some basic properties of the angular-momentum operators and their eigenfunctions. [Pg.186]

The two possible arrangements of spin and orbital motions of an electron for a given orbital angular momentum the spin can be < (+ ) or P( 2)... [Pg.21]

In chemistry, we found that to describe the complete quantum state of an electron in an atom, we had to introduce another quantum number, the intrinsic angular momentum or spin. This quantum number is designated as. v. By analogy to the... [Pg.661]

The standard Schrodinger equation for an electron is solved by complex functions which cannot account for the experimentally observed phenomenon of electron spin. Part of the problem is that the wave equation 8.4 mixes a linear time parameter with a squared space parameter, whereas relativity theory demands that these parameters be of the same degree. In order to linearize both space and time parameters it is necessary to replace their complex coefficients by square matrices. The effect is that the eigenfunction solutions of the wave equation, modified in this way, are no longer complex numbers, but two-dimensinal vectors, known as spinors. This formulation implies that an electron carries intrinsic angular momentum, or spin, of h/2, in line with spectroscopic observation. [Pg.281]


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See also in sourсe #XX -- [ Pg.4 , Pg.5 , Pg.6 , Pg.62 , Pg.63 , Pg.86 ]

See also in sourсe #XX -- [ Pg.17 , Pg.204 , Pg.207 , Pg.234 ]

See also in sourсe #XX -- [ Pg.26 , Pg.77 ]

See also in sourсe #XX -- [ Pg.84 ]

See also in sourсe #XX -- [ Pg.26 , Pg.77 ]

See also in sourсe #XX -- [ Pg.599 ]




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Angular momentum

Angular momentum electronic

Electron angular

Electron angular momentum

Electron momentum

Electron spin magnetic moment and angular momentum

Electronic momentum

Electronic spin angular

Electronic spin angular momentum

Electronic spin angular momentum

Operators, angular momenta electron spin

Spin angular momentum of electron

Spin momentum

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