Utilizes a large set of centrifuges to concentrate uranium-235 isotope out of natural uranium (a process called isotope separation). The resulting product is fissile uranium, ready to undergo a chain reaction in a nuclear reactor.
Utilizes a large set of centrifuges to concentrate uranium-235 isotope out of natural uranium (a process called isotope separation). The resulting product is fissile uranium, ready to undergo a chain reaction in a nuclear reactor.
Utilizes a large set of centrifuges to concentrate uranium-235 isotope out of natural uranium (a process called isotope separation). The resulting product is fissile uranium, ready to undergo a chain reaction in a nuclear reactor.
Utilizes a large set of centrifuges to concentrate uranium-235 isotope out of natural uranium (a process called isotope separation). The resulting product is fissile uranium, ready to undergo a chain reaction in a nuclear reactor.
Utilizes a large set of centrifuges to concentrate uranium-235 isotope out of natural uranium (a process called isotope separation). The resulting product is fissile uranium, ready to undergo a chain reaction in a nuclear reactor.
Utilizes a large set of centrifuges to concentrate uranium-235 isotope out of natural uranium (a process called isotope separation). The resulting product is fissile uranium, ready to undergo a chain reaction in a nuclear reactor.
Utilizes a large set of centrifuges to concentrate uranium-235 isotope out of natural uranium (a process called isotope separation). The resulting product is fissile uranium, ready to undergo a chain reaction in a nuclear reactor.
Utilizes a large set of centrifuges to concentrate uranium-235 isotope out of natural uranium (a process called isotope separation). The resulting product is fissile uranium pellets, ready to undergo a chain reaction in a nuclear reactor. The pellets are not radioactive yet and can be handled manually.
Utilizes a large set of centrifuges to concentrate uranium-235 isotope out of natural uranium (a process called isotope separation). The resulting product is fissile uranium, ready to undergo a chain reaction in a nuclear reactor.
Utilizes a large set of centrifuges to concentrate uranium-235 isotope out of natural uranium (a process called isotope separation). The resulting product is fissile uranium, ready to undergo a chain reaction in a nuclear reactor.
))。その結果、核分裂性ウランが得られ、核分裂反応炉で連鎖反応を起こす事が出来る様になります。