Examples of using Particle accelerators in English and their translations into Hebrew
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Particle accelerators at CERN.
Methane plants don't need particle accelerators.
T oday's particle accelerators aren't powerful enough.
This is exactly the idea behind particle accelerators.
The particle accelerators built in the last 80 years are large and heavy.
So how do these subatomic particle accelerators work?
Particle Accelerators are like giant microscopes that let us peer into the subatomic world.
Consortium for Advanced Modeling of Particle Accelerators.
And locally there, you could build particle accelerators and learn elementary particle physics and chemistry, and so on.
This might sound like science fiction,but it's the daily life of particle accelerators.
Strength points are the development of particle accelerators and of nuclear radiation detectors.
Because of this, we have seen some fastdevelopments in the technology that is needed for high-energy particle accelerators.
Now, I'm an accelerator physicist, so I design particle accelerators, and I try and understand how beams behave.
The work was also subsequentlysupported by DOE's CAMPA(Consortium for Advanced Modeling of Particle Accelerators) program.
Particle accelerators are on the verge of transformational breakthroughs- and advances in computing power and techniques are a big part of the reason.
The discovery of antimatter wasfollowed by deeper probing into the heart of the atom on larger, more powerful Particle Accelerators.
Firstly with cosmic rays, and then with particle accelerators, machines that smash together subatomic particles at great energies.
Glaser's invention solved a difficult problem that faced particle physics researchers,who needed a suitable detector for the new generation of powerful particle accelerators.
Many similar particle accelerators have been built worldwide, the most complex and well-known being CERN in Switzerland, utilized by thousands of physicists.
The latest achievement could enableengineers to drastically reduce the size of future particle accelerators, cutting down on the vast amounts of money normally required to build them.".
Using particle accelerators to crash atomic nuclei together, scientists can create new“superheavy” elements, which have more protons and neutrons in their nuclei than do the 92 or so elements found in nature.
The ions that cause sputtering come from a variety of sources-- they can come from plasma,specially constructed ion sources, particle accelerators, outer space(e.g. solar wind), or radioactive materials(e.g. alpha radiation).
And because such a collision can be created only in particle accelerators, research institutes all over the world that wanted to replicate the experiment and discover superheavy elements themselves began to acquire accelerators. .
So we now know that we are able to transfer enormous amount of currents inside superconductors, so we can use them to produce strong magnetic fields,such as needed in MRI machines, particle accelerators and so on.
Supercomputers- like telescopes for astronomy or particle accelerators for physics- are essential research instruments that are needed to answer questions that can't be explored in the lab or in the field,” TACC Executive Director Dan Stanzione said in the release….
Superconducting materials have obvious potential application in power transmission, and superconducting magnets have found a place inhospital magnetic resonance imaging machines, particle accelerators such as Europe's Large Hadron Collider, and magnetic levitation transportation systems.
Supercomputers- like telescopes for astronomy or particle accelerators for physics- are essential research instruments that are needed to answer questions that can't be explored in the lab or in the field," said Dan Stanzione, TACC executive director… research ecosystem that will enable leap-ahead discoveries."….
One reason for Helmholtz's enormous budget is that its scientists have the responsibility to run, maintain anddevelop large scientific projects in Germany including satellites, particle accelerators and nuclear reactors(even though such reactors are being taken out of service in Germany).
Comparison of these simulations revealed significant quantitative differences between the 2D and 3D models, highlighting the critical need for high-resolution 3D simulations in conjunction with advanced in situ visualization and analysis to enable the accurate modeling andstudy of new breeds of particle accelerators.