Приклади вживання Electroweak Англійська мовою та їх переклад на Українською
{-}
-
Colloquial
-
Ecclesiastic
-
Computer
Electroweak stars.
Other parts of this theory deal with electroweak interactions and neutrinos.
The grand unification epoch ends when theGUT forces further separate into the strong and electroweak forces.
Does supersymmetry stabilize the electroweak scale, preventing high quantum corrections?
Hooft, Gerardus't Netherlands study of the quantum structure of electroweak interactions.
The stage of life of a star that produces an electroweak star is theorized to occur after a supernova collapse.
Any framework for physics beyond the StandardModel must conform with precision measurements of the electroweak parameters.
Quark and lepton masses also break the electroweak gauge symmetries, so they, too, must arise spontaneously.
Color quantum numbers are the characteristic charges of the strong force,and are completely uninvolved in electroweak interactions.
In inflationary cosmology, the electroweak epoch ends when the inflationary epoch begins, at roughly 10- 32 second.
Gerard't Hooft Netherlands"for elucidating the quantum structure of electroweak interactions in physics".
Even before the Standard Model of electroweak interactions was constructed he studied lepton-hadron symmetries that are revealed in weak processes.
The resulting symmetry structure that Glashow proposed, SU(2)× U(1),forms the basis of the accepted theory of the electroweak interactions.
The neutral Higgs field(circled) breaks the electroweak symmetry and interacts with other particles to give them mass.
The electroweak theory of Weinberg and Salam was shown to be renormalizable(finite) and hence consistent by Gerardus't Hooft and Martinus Veltman.
The S, T, and U-parameters describe corrections to the electroweak gauge boson propagators from physics Beyond the Standard Model.
This interaction is asymptotically free at very high energies and becomes strong andconfining as the energy decreases to the electroweak scale of 246 GeV.
What prevents quantities at the electroweak scale, such as the Higgs boson mass, from getting quantum corrections on the order of the Planck scale?
The existence of W, Z, and Higgs bosons has been demonstrated,and other predictions of electroweak theory have been experimentally verified.
The number ND of electroweak doublets determines the decay constant F needed to produce the correct electroweak scale, as F= FEW/√ND= 246 GeV/√ND.
In the minimal, one-doublet model, three Goldstone bosons(technipions, πT)have decay constant F= FEW= 246 GeV and are eaten by the electroweak gauge bosons.
Their electroweak theory postulated not only the W bosons necessary to explain beta decay, but also a new Z boson that had never been observed.
If the technifermions transform under EW as left-handed doublets and right-handed singlets,three linear combinations of these Goldstone bosons couple to three of the electroweak gauge currents.
Theorists have subsequently merged the electroweak force with the strong force as part of the Grand Unified Theory(GUT), although this has still not been verified experimentally.
As the universe's temperature falls below a certain very high energy level, it is believed that the Higgs field spontaneously acquires a vacuum expectation value,which breaks electroweak gauge symmetry.
(In particle physics though, the electroweak interaction is the unified description of two of the four known fundamental interactions of nature: electromagnetism and the weak interaction);