Приклади вживання Weak nuclear Англійська мовою та їх переклад на Українською
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And the weak nuclear interaction.
The Higgs field inturn plays an integral role in our model for the weak nuclear force.
The other three are electromagnetism; weak nuclear force, which governs how atoms decay;
If the level of weak nuclear interaction is too low, then formation of long-lived stars is impossible in such a universe.
Quantum field theories for the strong nuclear force and the weak nuclear force have also been developed.
The weak nuclear force, which binds to all known particles in the Standard Model, and causes certain forms of radioactive decay.
During the 1970s a theory that united electromagnetic forces with the weak nuclear force was established.
The weak nuclear force, the one which binds all known particles in the Standard Model and is responsible for certain forms of radioactive decay.
It is known that neutrinos are formed anddestroyed as a result of particles disintegration in which the weak nuclear force is involved.
But as they began to learn more about the weak nuclear force, one of the four known forces of nature, a serious problem emerged.
The weak nuclear force and the electromagnetic force were unified, in their quantized forms, into a single quantum field theory known as electroweak theory.
This potential fifth force might be joined to the electromagnetic andstrong and weak nuclear forces as“manifestations of one grander, more fundamental force.”.
Some physicists propose dark energy is a‘fifth' force beyond the four already known- gravitational, electromagnetic,and the strong and weak nuclear forces.
The other fundamental forces are: the weak nuclear force, which binds to all known particles in the Standard Model, and causes certain forms of radioactive decay.
By the late 1970s, these efforts successfully utilizedgauge theory in the strong nuclear force and weak nuclear force, producing the modern standard model of particle physics.
Some physicists propose dark energy is a‘fifth' force that acts on matter, beyond the four already known- gravitational, electromagnetic,and the strong and weak nuclear forces.
As we discussed earlier,one would expect that at such high temperatures the strong and weak nuclear forces and the electromagnetic force would all be unified into a single force.
The third category is called the weak nuclear force, which is responsible for radioactivity and which acts on all matter particles of spin-½, but not on particles of spin 0, 1, or 2, such as photons and gravitons.
One direction that intrigues Feng is the possibility that this potential fifth force might be joined tothe electromagnetic and strong and weak nuclear forces as"manifestations of one grander, more.
The success of the unification of the electromagnetic and weak nuclear forces led to a number of attempts to combine these two forces with the strong nuclear force into what is called a grand unified theory(or GUT).
Current cosmological models tend to assume that the mass of dark matter is around 100 Gev(Giga-electrovolts),which corresponds to the mass scale of a lot of the other particles that interact via weak nuclear force.
Peter Higgs, Jeffrey Goldstone, and others, Sheldon Glashow,Steven Weinberg and Abdus Salam independently showed how the weak nuclear force and quantum electrodynamics could be merged into a single electroweak force.
Dark matter is different from regular, baryonic matter- the stuff that makes stars, galaxies, dogs, humans and everything else-in that it does not interact with anything except through gravity(and perhaps the weak nuclear force).
While the electromagnetic and weak nuclear forces have different manifestations today, the unification of these two forces into a single theory means that they would have been a single phenomenon at the much higher temperatures present in an early big-bang universe.
The first era is termed as the Planck epoch where the temperature was sohigh that the four fundamental forces that are electromagnetism, weak nuclear interaction, gravitation and strong nuclear interaction were only one fundamental force.
The Planck epoch is an era in traditional(non-inflationary) big bang cosmology wherein the temperature was so high that the four fundamental forces- electromagnetism,gravitation, weak nuclear interaction, and strong nuclear interaction- were one fundamental force”.
The Planck epoch is an era in traditional(non-inflationary) big bang cosmology in which the temperature is high enough that the four fundamental forces- electromagnetism,gravitation, weak nuclear interaction, and strong nuclear interaction- are all unified in one fundamental force.