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・ Uranium disilicide
・ Uranium disulfide
・ Uranium fluoride
・ Uranium glass
・ Uranium hexachloride
・ Uranium hexafluoride
・ Uranium hexoxide
・ Uranium hydride
・ Uranium hydride bomb
・ Uranium in Africa
・ Uranium in the environment
・ Uranium in Western Australia
・ Uranium Information Centre
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Uranium metallurgy
・ Uranium Mill Tailings Radiation Control Act
・ Uranium Mill Tailings Remedial Action
・ Uranium mining
・ Uranium mining and the Navajo people
・ Uranium mining by country
・ Uranium mining debate
・ Uranium mining in Arizona
・ Uranium mining in Australia
・ Uranium mining in Canada
・ Uranium mining in Colorado
・ Uranium mining in Kakadu National Park
・ Uranium mining in Kazakhstan
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・ Uranium mining in New Mexico


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Uranium metallurgy : ウィキペディア英語版
Uranium metallurgy
In materials science and materials engineering, uranium metallurgy is the study of the physical and chemical behavior of uranium and its alloys.
Commercial-grade uranium can be produced through the reduction of uranium halides with alkali or alkaline earth metals. Uranium metal can also be made through electrolysis of KUF5 or UF4, dissolved in a molten CaCl2 and NaCl. Very pure uranium can be produced through the thermal decomposition of uranium halides on a hot filament.
The uranium isotope 235U is used as the fuel for nuclear reactors and nuclear weapons. It is the only isotope existing in nature to any appreciable extent that is fissile, that is, fissionable by thermal neutrons. The isotope 238U is also important because it absorbs neutrons to produce a radioactive isotope that subsequently decays to the isotope 239Pu (plutonium), which also is fissile. Uranium in its natural state comprises just 0.71% 235U and 99.3% 238U, and the main focus of uranium metallurgy is the enrichment of uranium through isotope separation.
==Sources==

*Uranium
*Enriched uranium
*Nuclear weapon design
*The technology of mining and metallurgy (), retrieved 7 October 2005.

抄文引用元・出典: フリー百科事典『 ウィキペディア(Wikipedia)
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