Examples of using Uranium hexafluoride in English and their translations into Vietnamese
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Ecclesiastic
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Computer
In this process, uranium hexafluoride is repeatedly diffused through a silver-zinc membrane, and the different isotopes of uranium are separated by diffusion rate(since
Uranium hexafluoride(UF6), referred to as"hex" in the nuclear industry,
For most of the world's reactors, the next step in making a useable fuel is to convert the uranium oxide into a gas, uranium hexafluoride(UF6), which enables it to be enrichedh.
In addition to its use in enrichment, uranium hexafluoride has been used in an advanced reprocessing method(fluoride volatility), which was developed in the Czech Republic.
In this process, uranium hexafluoride is repeatedly diffused through a siver-zinc membrane and the different isotopes of uranium are separated by diffusion rate(uranium 238 is heavier
Before 2015, the country had two enrichment facilities- Natanz and Fordo- where uranium hexafluoride gas was fed into centrifuges to separate out the most fissile isotope, U-235.[…].
It has been shown that uranium hexafluoride is an oxidant and a Lewis acid that is able to bind to fluoride; for instance, the reaction of copper(II) fluoride with uranium hexafluoride in acetonitrile is reported to form copper(II) heptafluorouranate(VI), Cu(UF 7) 2.
In a letter that will be handed over to the International Atomic Energy Agency… Iran will announce that the process of increasing the capacity to produce… UF6(uranium hexafluoride)… will start on Tuesday,” he said.
For most of the world's reactors, the next step in making the fuel is to convert the uranium oxide into a gas, uranium hexafluoride(UF6), which enables it to be enriched.
About 95% of the depleted uranium produced is stored as uranium hexafluoride,(D)UF6, in steel cylinders in open air yards close to enrichment plants.
About 95% of the depleted uranium produced until now is stored as uranium hexafluoride,(D)UF6, in steel cylinders in open air yards close to enrichment plants.
About 95% of the depleted uranium produced is stored as uranium hexafluoride, a crystalline solid,(D)UF6, in steel cylinders in open air
Rather than affecting the speed of uranium enrichment centrifuges, Stuxnet 0.5 was designed to close crucial valves that feed uranium hexafluoride gas into the centrifuges, causing serious damage to the centrifuges
It has been shown that uranium hexafluoride is an oxidant[8] and a Lewis acid that is able to bind to fluoride; for instance, the reaction of copper(II) fluoride with uranium hexafluoride in acetonitrile is reported to form copper(II) heptafluorouranate(VI), Cu(UF7)2.
There have been several accidents involving uranium hexafluoride in the United States, including one in
In fact, gas centrifuges using uranium hexafluoride have largely replaced gaseous diffusion technology for uranium enrichment.[citation needed] As well as requiring less energy to achieve the same separation,
In this process, uranium hexafluoride is repeatedly diffused through a silver-zinc membrane, and the different isotopes of uranium are separated by diffusion rate(uranium 238 is heavier
contains large amounts of uranium hexafluoride.
contained a large amount of uranium hexafluoride.
Isotope separation occurred in the uranium hexafluoride gas between the nickel and copper pipes.[151].