Examples of using Mesons in English and their translations into Vietnamese
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Computer
Mesons are not produced by radioactive decay, but appear in nature only as
Muon was previously called mu mesons, but modern muon particles are not classified as mu mesons by physicists, and the name is no longer used by the physics community.
Later, scientists discovered differences between the mu-meson and other mesons, which led to the mu-meson being reclassified as a lepton
Muons were previously called mu mesons, but are not classified as mesons by modern particle physicists(see§ History), and that name is
Baryons(meaning"heavy") tend to have greater mass than mesons(meaning"intermediate"), which in turn tend to be heavier than leptons(meaning"lightweight"), but the heaviest lepton(the tau particle)
largely a retronym of the 1960s, used to distinguish a large number of baryons and mesons(which comprise hadrons) from particles that
triplets to form classes of particles called mesons and baryons, respectively.
And starting in 1999, the BaBar experiment at SLAC and the Belle experiment at KEK in Japan began to look into CP violation in decays of composite particles called B mesons.
Indeed, we can smash quarks and gluons together at high energies, but the QCD stuff that reaches the outer parts of the experimental detectors are things like mesons.
Cao Yu, and mesons.
triplets to form classes of particles usually known as mesons and baryon.
They theorised that key properties of the particles known as baryons and mesons were best explained if they were in turn made up of other constituent particles.
For one thing, neutral B mesons themselves are produced in extreme conditions- in particle colliders or in cosmic-ray interactions, for instance- which makes them hard or very costly to study.
Both postulated that the key properties of particles- baryons and mesons- were best explained if they were in turn made up of other constituent particles.
producing mesons, mainly pions and kaons,
will produce B mesons at a much higher rate than its predecessor, enabling future CP violation studies with higher precision.
In 1935, he published his theory of mesons, which explained the interaction between protons and neutrons, and was a major influence on research into elementary particles.
For one thing, neutral B mesons themselves are produced in extreme conditions-in particle colliders or in cosmic-ray interactions, for instance-which makes them hard or very costly to study.
it decayed into other particles and seemed to interact with mesons in unusual ways.
They produce large numbers of B and anti-B mesons whose decays will be studied in order to provide a better understanding of the so called CP violation i.e. the asymmetry in the decays of matter and anti-matter particles.