Examples of using Gluons in English and their translations into Hebrew
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Colloquial
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Ecclesiastic
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Computer
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Programming
Gluons are their own antiparticles?
He's a physicist, researching quarks, gluons.
Quarks and gluons almost never live in isolation.
Quantum particles, neutrinos, gluons, mesons, quarks.
The quarks arestuck together by other things called gluons.
Eight species of gluons, which mediate the strong nuclear force.
It is the energy of the field of the strong force,which is mediated by gluons.
There are eight types of gluons, each carrying a color charge and an anti-color charge.
And Protons and Neutrons are made up of Quarks,and Quarks are held together by Gluons.
And I was thinking about quarks and gluons and heavy ion collisions, and I was only 14 years old--.
Hybrids consist of one or more valence quark-antiquark pairs and one or more real gluons….
And Quarks and Gluons will release enough energy to create… the Higgs Boson particle, The God particle.
Just as photons carry the electromagnetic force,particles called gluons carry the strong force.
At the time, gluons were only suspected to exist while particles thought to be quarks had been observed directly.
The strong force is carried by particles called gluons, the weak force by particles called the"w" and"z" bosons.
Six of these gluons are labelled as pairs of"colors" and"anti-colors"(for example, a gluon can carry"red" and"anti-green".).
The other circles could correspond to the force particles,such as photons or weak-force particles or strong-force particles, the gluons.
And I was thinking about quarks and gluons and heavy ion collisions, and I was only 14 years old-- No, no, I wasn't 14 years old.
Unlike the other fundamental forces,the strong interaction also acts on the strong exchange particles themselves, since gluons carry color charge.
Physicists have known for decades that particles called gluons keep protons and neutrons intact- and thereby hold the universe together.
Since gluons thus carry a color charge themselves, they can also interact with other gluons, which makes the mathematical analysis of the strong nuclear force quite complicated and difficult.
Like when two photons collide and create an electron and its antiparticle, the positron,or when a Higgs particle is created in the collision of two gluons, if the energy is high enough.
Held by gluon to create stable atoms and thus stable molecules.
The gluino is the superpartner of the gluon, and hence carries colour charge.
Now the first thing we need to dois find the booth where they take the gluon photo.
Britta, would you agree to be bonded to me forever in the gluon chamber for an expensive souvenir photograph?
You see, what my father found was that by neutralizing the gluon he could create a concentrated particle beam.
You have to stabilize the strong forces,or the tunnel will tear Eureka apart on a gluon level.
This leads to a very limited range of the stronginteraction(not much farther than the hadron's radius) even though the gluon does not have mass.