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Reaktor pembiak: Perbedaan antara revisi

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* [http://www.ne.anl.gov/About/reactors/frt.shtml Reactors Designed by Argonne National Laboratory: Fast Reactor Technology] Argonne pioneered the development of fast reactors and is a leader in the development of fast reactors worldwide. See also [http://www.ne.anl.gov/About/legacy/ Argonne’s Nuclear Science and Technology Legacy].
* [http://www.ne.anl.gov/About/reactors/frt.shtml Reactors Designed by Argonne National Laboratory: Fast Reactor Technology] Argonne pioneered the development of fast reactors and is a leader in the development of fast reactors worldwide. See also [http://www.ne.anl.gov/About/legacy/ Argonne’s Nuclear Science and Technology Legacy].
* [https://web.archive.org/web/20130311145213/http://www.atomicheritage.org/ebr1.htm Atomic Heritage Foundation – EBR-I]
* [https://web.archive.org/web/20130311145213/http://www.atomicheritage.org/ebr1.htm Atomic Heritage Foundation – EBR-I]
* [http://www.world-nuclear.org/sym/1999/pdfs/wilson.pdf The Changing Need for a Breeder Reactor] by Richard Wilson at The Uranium Institute 24th Annual Symposium, September 1999
* [http://www.world-nuclear.org/sym/1999/pdfs/wilson.pdf The Changing Need for a Breeder Reactor] {{Webarchive|url=https://web.archive.org/web/20110514001643/http://www.world-nuclear.org/sym/1999/pdfs/wilson.pdf |date=2011-05-14 }} by Richard Wilson at The Uranium Institute 24th Annual Symposium, September 1999
* [http://www.ans.org/store/vi-300032 Experimental Breeder Reactor-II (EBR-II): An Integrated Experimental Fast Reactor Nuclear Power Station]
* [http://www.ans.org/store/vi-300032 Experimental Breeder Reactor-II (EBR-II): An Integrated Experimental Fast Reactor Nuclear Power Station]
* [http://www.itheo.org/ International Thorium Energy Organisation – www.IThEO.org]
* [http://www.itheo.org/ International Thorium Energy Organisation – www.IThEO.org]

Revisi per 20 Oktober 2022 16.05

Pemasangan dari inti Experimental Breeder Reactor I di Idaho, United States, 1951

Reaktor pembiak adalah sebuah reaktor nuklir yang menghasilkan lebih banyak bahan fisil daripada yang dikonsumsinya.[1] Reaktor pembiak dapat melakukan hal tersebut karena jumlah neutronnya cukup tinggi untuk menghasilkan lebih banyak bahan bakar fisil daripada yang reaktor-reaktor tersebut gunakan, dengan iradiasi dari sebuah bahan biak, seperti uranium-238 atau torium-232 yang dimuat ke dalam reaktor bersama dengan bahan bakar fisil.

Referensi

  1. ^ Kesalahan pengutipan: Tag <ref> tidak sah; tidak ditemukan teks untuk ref bernama Waltar

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Templat:Nuclear fission reactors