Examples of using Particle accelerators in English and their translations into Vietnamese
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Computer
The experiments conducted with particle accelerators are not regarded as part of accelerator physics,
Uranium, plutonium, americium and curium- all highly hazardous isotopes contained in spent nuclear fuel rods- can be transformed into substances with shorter half-lives in particle accelerators.
may require extremely large and expensive equipment, such as particle accelerators and nuclear reactors.
up such as rockets, lasers and particle accelerators, to fight with.
lasers and particle accelerators, to fight with.
But by smashing familiar particles together at nearly the speed of light using large machines aptly named particle accelerators, physicists can sometimes glimpse the invisible.
if so, even in particle accelerators.
Unfortunately, the predicted energy at which these forces would experimentally combine is about 100 billion times the energy produced by today's most powerful particle accelerators.
home at national or international facilities that have unique equipment, such as particle accelerators and gamma ray telescopes.
such as needed in MRI machines, particle accelerators and so on.
Such elements do not occur in nature and must be produced through experiments involving nuclear reactors or particle accelerators, via processes of nuclear fusion or neutron absorption.
lasers and particle accelerators to fight and ultimately survive against attacks from the enemy.
Atoms of synthetic elements only occur on Earth as the product of atomic bombs or experiments that involve nuclear reactors or particle accelerators, via nuclear fusion or neutron absorption.
refrigeration has made their use uneconomical except for such specialized applications as particle accelerators for physics research.
understanding of reality but would also pave the way for technologies, ranging from particle accelerators, to the global positioning system.
But by smashing familiar particles together at nearly the speed of light using large machines aptly named particle accelerators, physicists can sometimes glimpse the invisible.
In parallel with this development that could eventually compete with large particle accelerators, Gérard Mourou said he was very close, still thanks to
can currently only be produced in large facilities such as synchrotron particle accelerators.
only after several trips to cyclic particle accelerators(Synchrotrons) in Grenoble
Initially developed due to concerns about management of general information about particle accelerators and experiments at CERN, Mesh discussed the problems of loss of information, and creation of a