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1

Nuclear fission reactors. Facts on File, 2011.

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2

Nuclear reactor physics. 2nd ed. Wiley-VCH, 2007.

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3

McIntosh, W. W. Nuclear power reactors, an overview. Science and Technology, Washington State Institute for Public Policy, 1985.

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4

Charles, Pierre. Energie nucléaire: Fission et fusion. Ellipses, 2007.

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5

Italy) International Workshop on Fusion Neutrons and Subcritical Nuclear Fission (2011 Varenna. Fusion for neutrons and subcritical nuclear fission: Proceedings of the international conference : Varenna, Italy, 12-15 September 2011. Edited by Källne Jan. American Institute of Physics, 2012.

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6

Lamaze, George P. Activation foil irradiation by reactor cavity fission sources. U.S. Dept. of Commerce, National Bureau of Standards, 1988.

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7

Symposium, E. on Nuclear Materials for Fission Reactors (1991 Strasbourg France). Nuclear materials for fission reactors: Proceedings of Symposium E on Nuclear Materials for Fission Reactors of the 1991 E-MRS Fall Conference, Strasbourg, France, November 4-7, 1991. North-Holland, 1992.

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8

Viswanathan, U. K. Measurement of fission gas release from irradiated nuclear fuel elements. Bhabha Atomic Research Centre, 2005.

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9

International School of Physics "Enrico Fermi" (1990 Varenna, Italy). Status and perspectives of nuclear energy: Fission and fusion : Varenna on Lake Como, Villa Monastero, 10-20 July 1990. North-Holland, 1992.

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10

Slugeň, Vladimír. Safety of VVER-440 reactors: Barriers against fission products release. Springer, 2011.

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11

Hassmann, Klaus. Spaltproduktfreisetzung bei Kernschmelzen: Methodische Bestimmung und experimentelle Absicherung. TÜV Rheinland, 1987.

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12

Meeting, Royal Society (Great Britain) Discussion. The fast-neutron breeder fission reactor: Proceedings of a Royal Society dicussion meeting held on 24 and 25 May 1989. Royal Society, 1990.

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13

Gauld, I. C. Validation of SCALE 5 decay heat predictions for LWR spent nuclear fuel. U.S. Nuclear Regulatory Commission, Office of Nuclear Reactor Regulation, 2010.

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14

Seminar of the Phebus-FP (Fission Product) Project (1991 Saint-Paul-Lez-Durance, France). The Phebus Fission Product Project: Presentation of the experimental programme and test facility. Elsevier Applied Science, 2003.

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15

Laboratory, Oak Ridge National, and U.S. Nuclear Regulatory Commission. Division of Systems Analysis and Regulatory Effectiveness., eds. Computational benchmark for estimation of reactivity margin from fission products and minor actinides in PWR burnup credit. Division of Systems Analysis and Regulatory Effectiveness, Office Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 2001.

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16

Sjoreen, A. L. Source term estimation using MENU-TACT. Division of Operational Assessment, Office for Analysis and Evaluation of Operational Data, U.S. Nuclear Regulatory Commission, 1987.

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17

Unknown. Reactores Fision Nuclear De Hace Miles De Millones De Años. UNKNOWN, 1999.

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18

Cameron, I. R. Nuclear Fission Reactors. Springer, 2011.

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19

Nuclear Materials for Fission Reactors. Elsevier, 1992. http://dx.doi.org/10.1016/c2009-0-10147-2.

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20

Stacey, Weston M. Nuclear Reactor Physics. Wiley & Sons, Incorporated, John, 2018.

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21

Nuclear Reactor Physics. Wiley-Interscience, 2001.

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22

Stacey, Weston M. Nuclear Reactor Physics. 2nd ed. Wiley-VCH, 2007.

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23

Nuclear Reactor Physics. Wiley-VCH, 2018.

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24

Stacey, Weston M., and Weston M. Jr Stacey. Nuclear Reactor Physics. Wiley & Sons, Incorporated, John, 2007.

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25

Siracusa, Joseph M. 1. What are nuclear weapons? Oxford University Press, 2015. http://dx.doi.org/10.1093/actrade/9780198727231.003.0001.

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Atomic energy is the source of power for both nuclear reactors and nuclear weapons. This energy comes from the fission or fusion of atoms. ‘What are nuclear weapons?’ explains how a nuclear weapon works by looking at the characteristics of an atom and charts the discovery of the power of the atom for destructive purposes. The peaceful end of the Cold War did not mean the end of nuclear threats. We don't like to imagine the scenario of the use of nuclear weapons today. The task of caring for the injured would literally be beyond the ability of any medical system to respond.
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26

G, McHugh, Merrick A. R, and Royal Society (Great Britain), eds. The Fast-neutron-breeder fission reactor. Royal Society, 1990.

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27

A, Grundl J., and United States. National Bureau of Standards., eds. Activation foil irradiation by reactor cavity fission sources. U.S. Dept. of Commerce, National Bureau of Standards, 1988.

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28

Materials For Future Fusion And Fission Technologies. Cambridge University Press, 2009.

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29

Konings, Rudy. Thermochemical Data for Reactor Materials and Fission Products. Elsevier, 2020.

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30

Salvetti, C., and A. Ricci. Status and Perspectives of Nuclear Energy: Fission and Fusion/Stato E Prospettive Dell'Energia Nucleare : Fissione E Fusione (Proceedings of the Int). North-Holland, 1992.

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31

T, Rogers J., and Seminar on Fission Product Transport Processes in Reactor Accidents (1989 : Dubrovnik, Yugoslavia), eds. Fission product transport processes in reactor accidents. Hemisphere Pub. Corp., 1990.

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32

Thermochemical data for reactor materials and fission products. North-Holland, 1990.

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33

L, Wright A., Oak Ridge National Laboratory, and U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research. Division of Systems Research., eds. Primary system fission product release and transport: A state-of-the-art report to the Committee on the Safety of Nuclear Installations. U.S. Nuclear Regulatory Commission, 1994.

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34

Matzke, Hj. Nuclear Materials for Fission Reactors: Proceedings of Symposium E on Nuclear Materials for Fission Reactors of the 1991 E-Mrs Fall Conference : Str (European ... Research Society Symposia Proceedings). North-Holland, 1992.

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35

Leonard, Soffer, and U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research. Division of Systems Technology., eds. Accident source terms for light-water nuclear power plants: Final report. Division of Systems Technology, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1995.

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36

Leonard, Soffer, and U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research. Division of Systems Technology., eds. Accident source terms for light-water nuclear power plants: Final report. Division of Systems Technology, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1995.

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37

Kessler, Günter. Sustainable and Safe Nuclear Fission Energy: Technology and Safety of Fast and Thermal Nuclear Reactors (Power Systems). Springer, 2012.

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38

Stoller, Roger E., Chun Chun Fu, Akihiko Kimura, Maria Sameras, and Magdalena Serrano do Caro. Materials for Future Fusion and Fission Technologies: Volume 1125. University of Cambridge ESOL Examinations, 2014.

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39

Nuclear Fuel Cycle Science And Engineering. Woodhead Publishing, 2012.

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40

Wolf, E. L. Sustainable Energy Beyond Carbon. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198769804.003.0002.

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Energy from the Sun leads to direct heating of the Earth, and also to secondary forms of energy in winds, waves and hydroelectricity. Long-term energy resources in the Earth and its motions include tides, geothermal energy, fission fuels, and in deuterium that may potentially be used to power nuclear fusion reactors. We are interested in energy sources that will last on a time scale of thousands of years, and further, that will not interfere with other important aspects of life on Earth, such as clean air and water in abundant supply. Plants grew by photosynthesis starting in the carboniferous
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41

Hirsch, Peter, T. N. Marsham, R. S. Pease, and B. L. Eyre. The Fast Neutron Breeder Fission Reactor: Proceedings of a Royal Society Discussion Meeting Held on 24 and 25 May 1989. Scholium Intl, 1991.

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42

Agency, OECD Nuclear Energy, ed. Fission gas behaviour in water reactor fuels: Seminar proceedings, Cadarache, France, 26-29 September 2000. Nuclear Energy Agency, Organisation for Economic Co-operation and Development, 2002.

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43

International Nuclear Safety Advisory Group. Radionuclide Source Terms from Severe Accidents to Nuclear Power Plants With Light Reactors (Safety Series). Intl Atomic Energy Agency, 1987.

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44

International Nuclear Safety Advisory Group., ed. Radionuclide source terms from severe accidents to nuclear power plants with light water reactors: Report by the International Nuclear Safety Advisory Group. International Atomic Energy Agency ; Lanham, MD : UNIPUB [distributor], 1987.

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45

Nichols, A. L. Fission Product Chemistry in Severe Nuclear Reactor Accidents: Report of a Specialist Meeting at JRC-Ispra, 15-17 January 1990. European Communities / Union (EUR-OP/OOPEC/OPOCE), 1990.

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