functionally complete set - translation to ρωσικά
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functionally complete set - translation to ρωσικά

Complete set of Commuting Observables; Complete set of commuting operators

functionally complete set      
функционально полное множество
functional completeness         
PROPERTY OF A SET OF LOGICAL CONNECTIVES WHICH CAN EXPRESS ALL POSSIBLE TRUTH TABLES BY COMBINING MEMBERS OF THE SET
Complete set of Boolean operators; Sole sufficient operator; Adequacy (logic); Post's functional completeness theorem; Functionally complete; Sufficiently connected; Expressive adequacy; Post's criterion

общая лексика

функциональная полнота

functionally complete         
PROPERTY OF A SET OF LOGICAL CONNECTIVES WHICH CAN EXPRESS ALL POSSIBLE TRUTH TABLES BY COMBINING MEMBERS OF THE SET
Complete set of Boolean operators; Sole sufficient operator; Adequacy (logic); Post's functional completeness theorem; Functionally complete; Sufficiently connected; Expressive adequacy; Post's criterion

общая лексика

функционально полный

Ορισμός

кодировка
ж.
То же, что: кодирование.

Βικιπαίδεια

Complete set of commuting observables

In quantum mechanics, a complete set of commuting observables (CSCO) is a set of commuting operators whose common eigenvectors can be used as a basis to express any quantum state. In the case of operators with discrete spectra, a CSCO is a set of commuting observables whose simultaneous eigenspaces span the Hilbert space, so that the eigenvectors are uniquely specified by the corresponding sets of eigenvalues.

Since each pair of observables in the set commutes, the observables are all compatible so that the measurement of one observable has no effect on the result of measuring another observable in the set. It is therefore not necessary to specify the order in which the different observables are measured. Measurement of the complete set of observables constitutes a complete measurement, in the sense that it projects the quantum state of the system onto a unique and known vector in the basis defined by the set of operators. That is, to prepare the completely specified state, we have to take any state arbitrarily, and then perform a succession of measurements corresponding to all the observables in the set, until it becomes a uniquely specified vector in the Hilbert space (up to a phase).

Μετάφραση του &#39functionally complete set&#39 σε Ρωσικά