Приклади вживання Electromagnetic interaction Англійська мовою та їх переклад на Українською
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Charm is thought to be conserved in strong and electromagnetic interactions.
The strong, weak, and electromagnetic interactions are accounted for within the framework of the standard model.
Neutrinos feel neither the strong force nor electromagnetic interactions.
For example, the electromagnetic interaction between two electrons is via an exchange of photons.
Conceptual foundations of the unified theory of weak and electromagnetic interactions.
These are conserved in strong and electromagnetic interactions, but violated by weak interactions. .
Electromagnetic interactions between passing gas particles caused them to slow down and settle near the point of impact.
In normal matter, this energy loss occurs via electromagnetic interactions.
The electromagnetic interaction in quantum field theory results from the exchange of particles by photons- that is, photons are the carriers of this interaction. .
The existence of such interactions follows, in particular,from the unified theory of weak and electromagnetic interactions.
Contributions to the theory of the unified weak and electromagnetic interaction between elementary particles, including inter alia the prediction of the weak neutral current.
The law of parity conservation, which is also called P invariance,is formulated as the conservation of the quantity P in strong and electromagnetic interactions.
This is one manner of expressingthat"Gravity is a far weaker force than the electromagnetic interaction" since αG is 42 orders of magnitude smaller than α.
However, while the strong interaction and electromagnetic interaction seem to be invariant under the combined CP transformation operation, further experiments showed that this symmetry is slightly violated during certain types of weak decay.
When the excited molecule has a nearby neighbour molecule,the excitation energy may also be transferred, through electromagnetic interactions, from one molecule to another.
Contributions to the theory of the unified weak and electromagnetic interaction between elementary particles, including inter alia the prediction of the weak neutral current.
The combination of the SU(2) gauge theory of the weak interaction, the electromagnetic interaction, and the Higgs mechanism is known as the Glashow-Weinberg-Salam model.
The Standard Model of particle physics describes the electromagnetic interaction and the weak interaction as two different aspects of a single electroweak interaction, the theory of which was developed around 1968 by Sheldon Glashow, Abdus Salam and Steven Weinberg.
In a plasma shockwave intensity has increased dramatically electromagnetic interactions of charged particles and ionized plasma flows( galactic wind) began intensively to enter the solar system.
The Standard Model of particle physics describes the electromagnetic interaction and the weak interaction as two different aspects of a single electroweak interaction, the theory of which was developed around 1968 by Sheldon Glashow, Abdus Salam and Steven Weinberg(see W and Z bosons).
For contributions to the unification of the weak and electromagnetic interaction between elementary particles, Abdus Salam, Sheldon Glashow and Steven Weinberg were awarded the 1979 Nobel Prize in Physics.
But in the light of new understandings of that time aether wasconsidered to be also the carrier of light and electromagnetic interactions.