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31062364 100%

INTRODUCTION Spent fuel management comprises the technical operations that begin with the discharge of spent fuel from a power reactor and end either with the reprocessing of spent fuel and recycling of plutonium and uranium in new mixed oxide fuel (closed cycle) or with the direct disposal of the spent fuel elements in a geological repository (open, once-through cycle).

https://www.pdf-archive.com/2014/05/20/31062364/

20/05/2014 www.pdf-archive.com

fulltext--- 99%

Besides these actinides, plutonium presents a great potential danger to the environment.

https://www.pdf-archive.com/2018/08/18/fulltext---/

18/08/2018 www.pdf-archive.com

Atomenergoproekt BN-800 NPP 97%

yy efficient implementation of weapon-grade plutonium recycling program based on the inherently local technologies which reduce the risks involved in the use of new MOX-fuel at existing nuclear power plants;

https://www.pdf-archive.com/2018/08/18/atomenergoproektbn-800npp/

18/08/2018 www.pdf-archive.com

33011199 93%

The first factor is the modelling on the basis of weapon-grade plutonium but not civil for reactor.

https://www.pdf-archive.com/2018/08/05/33011199/

05/08/2018 www.pdf-archive.com

Eve Blueprints 75%

Antimatter Charge L Blueprint Hybrid Charge Blueprint 0.01 m3 Antimatter Charge M Blueprint Hybrid Charge Blueprint 0.01 m3 Antimatter Charge S Blueprint Hybrid Charge Blueprint 0.01 m3 Bistot Mining Crystal I Blueprint Mining Crystal Blueprint 0.01 m3 Carbonized Lead M Blueprint Projectile Ammo Blueprint 0.01 m3 Carbonized Lead S Blueprint Projectile Ammo Blueprint 0.01 m3 Depleted Uranium L Blueprint Projectile Ammo Blueprint 0.01 m3 Depleted Uranium M Blueprint Projectile Ammo Blueprint 0.01 m3 Depleted Uranium S Blueprint Projectile Ammo Blueprint 0.01 m3 EMP L Blueprint Projectile Ammo Blueprint 0.01 m3 EMP S Blueprint Projectile Ammo Blueprint 0.01 m3 Fusion S Blueprint Projectile Ammo Blueprint 0.01 m3 Fusion S Blueprint Projectile Ammo Blueprint 0.01 m3 Hammerhead I Blueprint Combat Drone Blueprint 0.01 m3 Hammerhead I Blueprint Combat Drone Blueprint 0.01 m3 Hammerhead I Blueprint Combat Drone Blueprint 0.01 m3 Hammerhead I Blueprint Combat Drone Blueprint 0.01 m3 Hammerhead I Blueprint Combat Drone Blueprint 0.01 m3 Hammerhead I Blueprint Combat Drone Blueprint 0.01 m3 Hammerhead I Blueprint Combat Drone Blueprint 0.01 m3 Hammerhead I Blueprint Combat Drone Blueprint 0.01 m3 Hammerhead I Blueprint Combat Drone Blueprint 0.01 m3 Hammerhead I Blueprint Combat Drone Blueprint 0.01 m3 Hobgoblin I Blueprint 7 Combat Drone Blueprint 0.07 m3 Hobgoblin I Blueprint Combat Drone Blueprint 0.01 m3 Hobgoblin I Blueprint Combat Drone Blueprint 0.01 m3 Hobgoblin I Blueprint Combat Drone Blueprint 0.01 m3 Hornet I Blueprint Combat Drone Blueprint 0.01 m3 Hornet I Blueprint Combat Drone Blueprint 0.01 m3 Hornet I Blueprint Combat Drone Blueprint 0.01 m3 Inferno Cruise Missile Blueprint Missile Blueprint 0.01 m3 Inferno Cruise Missile Blueprint Missile Blueprint 0.01 m3 Inferno Cruise Missile Blueprint Missile Blueprint 0.01 m3 Inferno Heavy Assault Missile Blueprint Missile Blueprint 0.01 m3 Inferno Heavy Assault Missile Blueprint Missile Blueprint 0.01 m3 Inferno Heavy 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Blueprint Missile Blueprint 0.01 m3 Inferno Rocket Blueprint Missile Blueprint 0.01 m3 Inferno Rocket Blueprint Missile Blueprint 0.01 m3 Inferno Torpedo Blueprint Missile Blueprint 0.01 m3 Inferno Torpedo Blueprint Missile Blueprint 0.01 m3 Iridium Charge L Blueprint Hybrid Charge Blueprint 0.01 m3 Iridium Charge M Blueprint Hybrid Charge Blueprint 0.01 m3 Iridium Charge S Blueprint Hybrid Charge Blueprint 0.01 m3 Jaspet Mining Crystal I Blueprint Mining Crystal Blueprint 0.01 m3 Kernite Mining Crystal I Blueprint Mining Crystal Blueprint 0.01 m3 Light Armor Maintenance Bot I Blueprint m3 Logistic Drone Blueprint 0.01 Light Shield Maintenance Bot I Blueprint m3 Logistic Drone Blueprint 0.01 Mjolnir Cruise Missile Blueprint Missile Blueprint 0.01 m3 Mjolnir Cruise Missile Blueprint Missile Blueprint 0.01 m3 Mjolnir Heavy Assault Missile Blueprint Missile Blueprint 0.01 m3 Mjolnir Heavy Assault Missile Blueprint Missile Blueprint 0.01 m3 Mjolnir Heavy Missile Blueprint Missile Blueprint 0.01 m3 Mjolnir Heavy Missile Blueprint Missile Blueprint 0.01 m3 Mjolnir Heavy Missile Blueprint Missile Blueprint 0.01 m3 Mjolnir Heavy Missile Blueprint Missile Blueprint 0.01 m3 Mjolnir Heavy Missile Blueprint Missile Blueprint 0.01 m3 Mjolnir Heavy Missile Blueprint Missile Blueprint 0.01 m3 Mjolnir Heavy Missile Blueprint Missile Blueprint 0.01 m3 Mjolnir Heavy Missile Blueprint Missile Blueprint 0.01 m3 Mjolnir Heavy Missile Blueprint Missile Blueprint 0.01 m3 Mjolnir Heavy Missile Blueprint Missile Blueprint 0.01 m3 Mjolnir Heavy Missile Blueprint Missile Blueprint 0.01 m3 Mjolnir Heavy Missile Blueprint Missile Blueprint 0.01 m3 Mjolnir Heavy Missile Blueprint Missile Blueprint 0.01 m3 Mjolnir Heavy Missile Blueprint Missile Blueprint 0.01 m3 Mjolnir Heavy Missile Blueprint Missile Blueprint 0.01 m3 Mjolnir Heavy Missile Blueprint Missile Blueprint 0.01 m3 Mjolnir Light Missile Blueprint Missile Blueprint 0.01 m3 Mjolnir Light Missile Blueprint Missile Blueprint 0.01 m3 Mjolnir Light Missile Blueprint Missile Blueprint 0.01 m3 Mjolnir Light Missile Blueprint Missile Blueprint 0.01 m3 Mjolnir Rocket Blueprint Missile Blueprint 0.01 m3 Mjolnir Rocket Blueprint Missile Blueprint 0.01 m3 Mjolnir Torpedo Blueprint Missile Blueprint 0.01 m3 Mjolnir Torpedo Blueprint Missile Blueprint 0.01 m3 Nova Cruise Missile Blueprint Missile Blueprint 0.01 m3 Nova Cruise Missile Blueprint Missile Blueprint 0.01 m3 Nova Cruise Missile Blueprint Missile Blueprint 0.01 m3 Nova Cruise Missile Blueprint Missile Blueprint 0.01 m3 Nova Heavy Assault Missile Blueprint Missile Blueprint 0.01 m3 Nova Heavy Assault Missile Blueprint Missile Blueprint 0.01 m3 Nova Heavy Missile Blueprint Missile Blueprint 0.01 m3 Nova Heavy Missile Blueprint Missile Blueprint 0.01 m3 Nova Heavy Missile Blueprint Missile Blueprint 0.01 m3 Nova Heavy Missile Blueprint Missile Blueprint 0.01 m3 Nova Heavy Missile Blueprint Missile Blueprint 0.01 m3 Nova Heavy Missile Blueprint Missile Blueprint 0.01 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Blueprint 0.01 m3 Nuclear S Blueprint Projectile Ammo Blueprint 0.01 m3 Ogre I Blueprint Combat Drone Blueprint Omber Mining Crystal I Blueprint Phased Plasma S Blueprint 0.01 m3 Mining Crystal Blueprint Projectile Ammo Blueprint Plagioclase Mining Crystal I Blueprint Mining Crystal Blueprint 0.01 m3 0.01 m3 0.01 m3 Plutonium Charge L Blueprint Hybrid Charge Blueprint 0.01 m3 Plutonium Charge M Blueprint Hybrid Charge Blueprint 0.01 m3 Plutonium Charge S Blueprint Hybrid Charge Blueprint 0.01 m3 Proton S Blueprint Projectile Ammo Blueprint 0.01 m3 Pyroxeres Mining Crystal I Blueprint Mining Crystal Blueprint 0.01 m3 Scordite Mining Crystal I Blueprint Mining Crystal Blueprint 0.01 m3 Scourge Cruise Missile Blueprint Missile Blueprint 0.01 m3 Scourge Cruise Missile Blueprint Missile Blueprint 0.01 m3 Scourge Cruise Missile Blueprint Missile Blueprint 0.01 m3 Scourge Heavy Assault Missile Blueprint Missile Blueprint 0.01 m3 Scourge Heavy Assault Missile Blueprint Missile Blueprint 0.01 m3 Scourge Heavy Missile Blueprint Missile Blueprint 0.01 m3 Scourge Heavy Missile Blueprint Missile Blueprint 0.01 m3 Scourge Heavy Missile Blueprint Missile Blueprint 0.01 m3 Scourge Heavy Missile Blueprint Missile Blueprint 0.01 m3

https://www.pdf-archive.com/2017/02/18/eve-blueprints/

18/02/2017 www.pdf-archive.com

8 Ponomarev Stepnoy REA Perspectives of development and implementation of closed fuel cycle 62%

SNF and RW management – a reduction of SNF accumulation rate, SNF reprocessing, plutonium recycling, safe RW confinement 5 1

https://www.pdf-archive.com/2018/08/18/untitled-pdf-document/

18/08/2018 www.pdf-archive.com

Bachelor-Ökotrophologie 12 102 57%

21 3.9 Plutonium-239 Isotop (Pu):

https://www.pdf-archive.com/2017/01/06/bachelor-kotrophologie-12-102/

06/01/2017 www.pdf-archive.com

Data Sheet.PDF 54%

The Periodic Table of the Elements 1 2 3 4 5 6 7 0 (18) 1.0 4.0 H He hydrogen (2) Key 6.9 9.0 relative atomic mass Li Be symbol B C N O F Ne lithium beryllium name boron carbon nitrogen oxygen fluorine neon 3 4 atomic (proton) number 23.0 24.3 Na Mg sodium magnesium 1 (13) (14) (15) (16) (17) 10.8 12.0 14.0 16.0 19.0 helium (1) 2 20.2 5 6 7 8 9 10 27.0 28.1 31.0 32.1 35.5 39.9 Al Si P S Cl Ar aluminium silicon phosphorus sulfur chlorine argon 13 69.7 14 72.6 15 74.9 16 79.0 17 79.9 18 83.8 11 12 (3) (4) (5) (6) (7) (8) (9) (10) (11) (12) 39.1 40.1 45.0 47.9 50.9 52.0 54.9 55.8 58.9 58.7 63.5 65.4 Cr Mn Fe Co Ni Cu Zn Ga Ge As Se Br Kr iron cobalt nickel copper zinc gallium germanium arsenic selenium bromine krypton K Ca Sc Ti V potassium calcium scandium titanium vanadium chromium manganese 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 85.5 87.6 88.9 91.2 92.9 96.0 [98] 101.1 102.9 106.4 107.9 112.4 114.8 118.7 121.8 127.6 126.9 131.3 Mo Tc Rb Sr Y Zr Nb rubidium strontium yttrium zirconium niobium molybdenum technetium Ru Rh Pd Ag Cd In Sn Sb Te I Xe ruthenium rhodium palladium silver cadmium indium tin antimony tellurium iodine xenon 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 132.9 137.3 138.9 178.5 180.9 183.8 186.2 190.2 192.2 195.1 197.0 200.6 204.4 207.2 209.0 [209] [210] [222] Cs Ba La * Hf Ta W Re Os Ir Pt Au Hg Tl Pb Bi Po At Rn caesium barium lanthanum hafnium tantalum tungsten rhenium osmium iridium platinum gold mercury thallium lead bismuth polonium astatine radon 80 81 82 83 84 85 86 55 56 57 72 73 74 75 76 77 78 79 [223] [226] [267] [268] [271] [272] [270] [276] [281] Mt Ds [280] Fr Ra [227] Ac † Rf Db Sg Bh francium radium actinium rutherfordium dubnium seaborgium bohrium hassium 87 88 89 104 105 106 107 108 109 110 111 140.1 140.9 144.2 [145] 150.4 152.0 157.3 158.9 162.5 164.9 167.3 168.9 173.1 Ce Pr Nd Pm Sm Eu Gd Tb Dy Ho Er Tm Yb Lu samarium europium gadolinium terbium dysprosium holmium erbium thulium ytterbium lutetium * 58 – 71 Lanthanides † 90 – 103 Actinides cerium Hs praseodymium neodymium promethium Rg Elements with atomic numbers 112-116 have been reported but not fully authenticated meitnerium darmstadtium roentgenium 175.0 58 59 60 61 62 63 64 65 66 67 68 69 70 71 232.0 231.0 238.0 [237] [244] [243] [247] [247] [251] [252] [257] [258] [259] [262] Cf Es Th Pa U Np Pu Am Cm Bk thorium protactinium uranium neptunium plutonium americium curium berkelium 90 91 92 93 94 95 96 97 californium einsteinium 98 99 Fm Md No Lr fermium mendelevium nobelium lawrencium 100 101 102 103 GCE Chemistry Data Sheet Table A Infrared absorption data Bond Wavenumber /cm–1 Table B 1H NMR chemical shift data Type of proton δ/ppm ROH 0.5 – 5.0 RCH3 0.7 – 1.2 RNH2 1.0 – 4.5 R2CH2 1.2 – 1.4 2850 – 3300 R3CH 1.4 – 1.6 O H (acids) 2500 – 3000 R C C N 2220 – 2260 C O 1680 – 1750 R O C C C 1620 – 1680 H N H (amines) 3300 – 3500 O H (alcohols) 3230 – 3550 C H C O 1000 – 1300 C C 750 – 1100 Table C 13C NMR chemical shift data Type of carbon C C C R 5 – 40 Cl or Br R C C C 2.1– 2.6 δ/ppm 10 – 70 20 – 50 O O H 3.1 – 3.9 RCH2Cl or Br 3.1 – 4.2 R C O C 3.7 – 4.1 O H H R C C 25 – 60 N alcohols, ethers or esters O C R C C R C C 90 – 150 N 110 – 160 C 9.0 – 10.0 H R C C 10.0 – 12.0 O esters or acids 160 – 185 aldehydes or ketones 190 – 220 O O R 110 – 125 4.5 – 6.0 O R 50 – 90 H R C O Phosphate and sugars CH2OH OH O P H O H OH O phosphate H H OH H OH O H H HO OH HOCH2 H H OH OH glucose H 2-deoxyribose Bases O NH2 N N N H N N HN H2N adenine N O NH2 H3C N N H N H guanine NH O N H cytosine thymine Amino acids H2N CH COOH H2N alanine CH2 CH2 lysine Haem B CH2 cysteine CH COOH CH2 CH COOH CH COOH CH2 SH aspartic acid H2N CH2 H2N CH2 COOH CH3 H2N CH COOH H2N CH COOH CH2 OH NH2 phenylalanine serine O

https://www.pdf-archive.com/2017/02/28/data-sheet/

28/02/2017 www.pdf-archive.com

Jul17-AM-Fireworks 54%

1915 AWAN BP £5.50 £4.50 £5.50 £4.50 BUY ONE GET ONE FREE BUY ONE GET ONE FREE That’s RSP £15.99 NORMAL PRICE FREE 325 SHOT PLUTONIUM PULSE CTN QTY:

https://www.pdf-archive.com/2017/09/14/jul17-am-fireworks/

14/09/2017 www.pdf-archive.com

NuclearProliferationandSecurityConcerns 46%

  3 4     3  The Cold War gave birth to many nuclear programs around the world.  South Africa, which is rich in Uranium deposits, “developed nuclear weapons  to deter an overwhelming threat from combined Cuban and Soviet military  forces”6  France and the United Kingdom also developed nuclear weapons in  response to the growing Soviet threat.7  With the great threat to the states  by the Soviet Union, many states felt the need to arm themselves with  nuclear weapons for security. The fall of the Soviet Union, also brought  about the dismantlement of many of the nuclear programs worldwide. The  security model can explain previous cases of proliferation and dismantlement  once the threat is removed, but does it provide us a reliable way of  predicting future proliferation. The circumstances that fueled nuclear  proliferation during the Cold War no longer survive in the current climate.  The world’s superpowers currently all have established nuclear programs.  We should turn our attention to smaller states who may be interested in  developing nuclear programs of their own. The security model would not be  appropriate to measure or help predict the actions of these states, since they  would not face the same circumstances that led to proliferation in the past.   In order to better understand what would lead a state to proliferation,  outside of the security model, we can look at recent cases such as India’s  nuclear program. Sagan explains India’s case using the domestic politics  6  Du Preez, Jean, and Thomas Maettig. "From pariah to nuclear poster boy: how plausible is a reversal?."  Forecasting Nuclear Proliferation: the Role of Theory, Palo Alto: Stanford University Press (forthcoming)  (2010).  7  Sagan, Scott D. "Why do states build nuclear weapons? Three models in search of a bomb." (2012). Pp.  58      4  model. Under this model he states that nuclear weapons are, “...not obvious  or inevitable solutions to international programs; instead, nuclear weapons  programs are solutions looking for problems to attach themselves so as to  justify their existence.”8  Cases such as these would not fit under the  traditional security model because the program exists outside of a security  threat to the state. India developed their nuclear program and successfully  tested their nuclear device in May 1974.9  India was vying for power and  wanted to build a strong military to make their presence known as a  powerful nation. In 1971, India signed a mutual defense treaty with the  Soviet Union. 10   The only possible security issue would have been with  China, but instead India’s nuclear proliferation was not in response to China,  but more of a way to compete with China. India’s nuclear program was in  the works prior to Prime Minister Gandhi. Her father, Prime Minister Nehru  envisioned an industrialized India, mirrored after the Soviet Union and  implementing the latest sciences and technologies to break the perceived  image of India the world had.11  India obtained nuclear power plants from  Canada, under the agreement that it would be used for energy sources.  Ultimately, it was later determined that the reactor that Canada provided,  was used to produce the plutonium for India’s nuclear bombs. The quick   Sagan, Scott D. "The causes of nuclear weapons proliferation." ​Annual Review of Political Science 14  (2011): 225­244. Pp. 65  9  Ibid. 67  10  Van Praagh, David. "India’s Bomb." ​Asian Affairs: An American Review 1.6 (1974): 357­370.   11  Ibid. 360    8    

https://www.pdf-archive.com/2016/09/21/nuclearproliferationandsecurityconcerns/

21/09/2016 www.pdf-archive.com

NuclearProliferationandSecurityConcerns-AmandaSewell (3) 45%

  3 4     3  The Cold War gave birth to many nuclear programs around the world.  South Africa, which is rich in Uranium deposits, “developed nuclear weapons  to deter an overwhelming threat from combined Cuban and Soviet military  forces”6  France and the United Kingdom also developed nuclear weapons in  response to the growing Soviet threat.7  With the great threat to the states  by the Soviet Union, many states felt the need to arm themselves with  nuclear weapons for security. The fall of the Soviet Union, also brought  about the dismantlement of many of the nuclear programs worldwide. The  security model can explain previous cases of proliferation and dismantlement  once the threat is removed, but does it provide us a reliable way of  predicting future proliferation. The circumstances that fueled nuclear  proliferation during the Cold War no longer survive in the current climate.  The world’s superpowers currently all have established nuclear programs.  We should turn our attention to smaller states who may be interested in  developing nuclear programs of their own. The security model would not be  appropriate to measure or help predict the actions of these states, since they  would not face the same circumstances that led to proliferation in the past.   In order to better understand what would lead a state to proliferation,  outside of the security model, we can look at recent cases such as India’s  nuclear program. Sagan explains India’s case using the domestic politics  6  Du Preez, Jean, and Thomas Maettig. "From pariah to nuclear poster boy: how plausible is a reversal?."  Forecasting Nuclear Proliferation: the Role of Theory, Palo Alto: Stanford University Press (forthcoming)  (2010).  7  Sagan, Scott D. "Why do states build nuclear weapons? Three models in search of a bomb." (2012). Pp.  58      4  model. Under this model he states that nuclear weapons are, “...not obvious  or inevitable solutions to international programs; instead, nuclear weapons  programs are solutions looking for problems to attach themselves so as to  justify their existence.”8  Cases such as these would not fit under the  traditional security model because the program exists outside of a security  threat to the state. India developed their nuclear program and successfully  tested their nuclear device in May 1974.9  India was vying for power and  wanted to build a strong military to make their presence known as a  powerful nation. In 1971, India signed a mutual defense treaty with the  Soviet Union. 10   The only possible security issue would have been with  China, but instead India’s nuclear proliferation was not in response to China,  but more of a way to compete with China. India’s nuclear program was in  the works prior to Prime Minister Gandhi. Her father, Prime Minister Nehru  envisioned an industrialized India, mirrored after the Soviet Union and  implementing the latest sciences and technologies to break the perceived  image of India the world had.11  India obtained nuclear power plants from  Canada, under the agreement that it would be used for energy sources.  Ultimately, it was later determined that the reactor that Canada provided,  was used to produce the plutonium for India’s nuclear bombs. The quick   Sagan, Scott D. "The causes of nuclear weapons proliferation." ​Annual Review of Political Science 14  (2011): 225­244. Pp. 65  9  Ibid. 67  10  Van Praagh, David. "India’s Bomb." ​Asian Affairs: An American Review 1.6 (1974): 357­370.   11  Ibid. 360    8    

https://www.pdf-archive.com/2016/09/21/nuclearproliferationandsecurityconcerns-amandasewell-3/

21/09/2016 www.pdf-archive.com

PP Kernenergie Björn Fich 44%

Die Kosten nach 2080 wird vermutlich der Steuerzahler zahlen müssen und das bei einer Halbwertszeit des Atommülls (hier wurde Plutonium als Abfallprodukt angenommen) von 24 110 Jahren.

https://www.pdf-archive.com/2019/06/08/pp-kernenergie-bjorn-fich/

08/06/2019 www.pdf-archive.com

periodic table 43%

Rare Earth Metals 58 Pr La 57 Ce 65 Dy 64 Tb 71 70 Lu 63 Gd 67 Er 69 Yb 59 Nd 60 Pm 61 Sm 62 Eu 66 Ho 68 Tm Cerium Lanthanum Terbium Gadolinium Lutetium Ytterbium Europium Holmium Thulium Samarium Dysprosium Erbium Praseodymium Neodymium Promethium 6 Lighter Telescope Fluorescent Smart Material MRI Scientific Photodynamic Color Laser Laser Torchworkers' Electric Motor Luminous Electric Motor Optical Fiber Flints Lenses Lamps Diagnosis Medicine Fiber Lasers Dials Televisions Surgery Surgery Eyeglasses Magnets Magnets Actuators Communications 97 Cf Ac 89 Th 96 Bk 95 Cm 102 Lr 103 93 Pu 94 Am 98 Es 99 Fm 91 U 92 Np 100 Md 101 No 90 Pa Berkelium Actinium Curium Americium Nobelium Lawrencium Neptunium Plutonium Californium Einsteinium Protactinium Uranium Fermium Mendelevium Thorium Actinide Metals 7 Radioactive Medicine Gas Lamp Mantles Radioactive Waste Nuclear Power Radioactive Waste Nuclear Weapons Smoke Detectors Mineral Analyzers Radioactive Waste Mineral Analyzers radioactive, never found in nature, no uses except atomic research © 2005–2016 Keith Enevoldsen elements.wlonk.com Creative Commons Attribution-ShareAlike 4.0 International License Good one from Keith Enevoldsen The Periodic Table of the Elements, in Words Periods Hydrogen belongs to no definite group.

https://www.pdf-archive.com/2017/11/29/periodic-table/

29/11/2017 www.pdf-archive.com

fukureport1b 41%

But that only flew with the most ignorant in the population, because a nuclear weapons style “prompt criticality” can happen only with nuclear material that is 70 percent enriched plutonium, or 90 percent enriched uranium, and THEN only when a high precision explosive charge brings that material together in a calculated way at supersonic speeds.

https://www.pdf-archive.com/2017/03/22/fukureport1b/

22/03/2017 www.pdf-archive.com

giftstoffe ezigarette 40%

Dieses lagert sich zusammen mit Plutonium aus Bombenversuchen in den 60ern und Satellitenabstürzen in den 70ern besonders gut an etwa 0,3µ große Staubpartikel in der Luft an.

https://www.pdf-archive.com/2016/06/24/giftstoffe-ezigarette/

24/06/2016 www.pdf-archive.com

Scripal Case 37%

“It is a fact that the Russian secret services have reactivated the practice of executing traitors, just like it happened in 2006 in the case of Litvinenko who was poisoned with plutonium in the UK.

https://www.pdf-archive.com/2018/11/28/scripal-case/

28/11/2018 www.pdf-archive.com

TWQ Fall2015 Kroenig-Volpe 34%

The Next Chapter in Nuclear Proliferation To build nuclear weapons, a state must first produce the fissile material that fuels the nuclear explosion either by enriching uranium or reprocessing plutonium from spent reactor fuel and then assembling this nuclear material into a functioning nuclear device.11 Enrichment and reprocessing are difficult technical feats, made more complicated by the need to manufacture thousands of metal component parts to extremely high standards and very close tolerances at each stage, such as structures to hold the core of a nuclear reactor or the specially-designed rotating components of a gas centrifuge.12 At present, nuclear suppliers are likely to deny requests for turnkey enrichment or reprocessing facilities, or their key component parts, due to the proliferation risks.

https://www.pdf-archive.com/2016/04/04/twq-fall2015-kroenig-volpe/

04/04/2016 www.pdf-archive.com

EröffnungsvortragMünster24 09 2015 33%

So testeten die USA, Großbritannien und Frankreich bis 1996 auf pazifischen Inseln mehr als 300 Atom-, Wasserstoff-, Plutonium- und Neutronenbomben.

https://www.pdf-archive.com/2015/10/24/ero-ffnungsvortragmu-nster24-09-2015/

24/10/2015 www.pdf-archive.com

NP in English Rostechnadzor Guidelines Norms Rules Standards 30%

Basic Criteria and Safety Requirements https://gostperevod.com/np-06005.html NP 061-05 in English - Safety Rules for Storage and Transportation of Nuclear Fuel at Nuclear Facilities https://gostperevod.com/np-061-05.html NP 062-05 in English - Rules of Design and Safe Operation of Equipment and Products of Reactor Installations with Water Coolant for Floating Nuclear Power Plants https://gostperevod.com/np-062-05.html NP 063-05 in English - Nuclear Safety Rules for Nuclear Fuel Cycle Facilities https://gostperevod.com/np-063-05.html NP 064-05 in English - Accounting of External Natural and Man-Induced Impacts on Nuclear Facilities https://gostperevod.com/np-064-05.html NP 065-05 in English - Requirements to the Contents of Safety Analysis Report in the Course of R&D and Experimental Designing Works with Plutonium-Involving Materials at Nuclear Fuel Cycle Facilities https://gostperevod.com/np-065-05.html NP 066-05 in English - Requirements to Safety Analysis Report of Storage Facilities for Nuclear Materials https://gostperevod.com/np-066-05.html NP 067-05 in English - Basic Rules on Accounting and Control of Radioactive Materials and Radioactive Waste in an Organization https://gostperevod.com/np-067-05.html NP 067-11 in English - Federal Standards and Rules in the Field of Atomic Energy Use 'Basic Rules on Accounting and Control of Radioactive Materials and Radioactive Waste in an Organization' https://gostperevod.com/np-067-11.html NP 067-16 in English - Federal Standards and Rules in the Field of Atomic Energy Use 'Basic Rules on Accounting and Control of Radioactive Materials and Radioactive Waste in an Organization' https://gostperevod.com/np-067-16.html NP 068-05 in English - Piping Armature for Nuclear Power Plants.

https://www.pdf-archive.com/2018/06/14/np-in-english-rostechnadzor-guidelines-norms-rules-standards/

14/06/2018 www.pdf-archive.com

RB in English - Safety guide on nuclear energy use 25%

RB in English - Safety guide on nuclear energy use https://gostperevod.com/russian/rb РБ - Руководство по безопасности при использовании атомной энергии https://gostperevod.ru/russian/rb RB 001-05 in English - Recommendations to the Report on In-depth Safety Analysis of NPP Power Units under Operation (OUOB AS) https://gostperevod.com/rb-001-05.html RB 002-16 in English - Safety guide on nuclear energy use 'Water chemistry of Nuclear Power Plants' https://gostperevod.com/rb-002-16.html RB 003-98 in English - Requirements to the program of quality assurance at radioactive waste management https://gostperevod.com/rb-003-98.html RB 004-98 in English - Requirements to Certification of Control Systems Important for Nuclear Power Plants Safety https://gostperevod.com/rb-004-98.html RB G-05-039-96 in English - Guidance on the hazard analysis of accidental detonations and determination of parameters of their mechanical operation https://gostperevod.com/rb-g05-039-96.html RB 005-98 in English - Requirements to Certification of Building Structures Important for Safety of Nuclear Facilities https://gostperevod.com/rb-005-98.html RB 006-98 in English - Determination of Initial Seismic Soils Vibrations for Design Bases https://gostperevod.com/rb-006-98.html RB 007-99 in English - Accounting of Fast Neutron Fluence on WWER Vessels and Surveillance Specimens for Further Prediction of Vessels Radiation Resource https://gostperevod.com/rb-007-99.html RB 008-99 in English - Safety Ensuring in Radioactive Waste Management of Nuclear Research Installations https://gostperevod.com/rb-008-99.html RB 009-99 in English - Methodology of Vulnerability Assessment of Nuclear Materials and Nuclear Installation Physical Protection https://gostperevod.com/rb-009-99.html RB 010-16 in English - Safety guide on nuclear energy use 'Recommendations on the Safety of Radioactive Waste Management on Ships and Other Floating Vessels with Nuclear Reactors, and Nuclear Service Ships' https://gostperevod.com/rb-010-16.html RB 010-2000 in English - Safety provision when dealing with radioactive waste of ships and other floating crafts with nuclear reactors and radiation sources https://gostperevod.com/rb010-2000.html RB 011-2000 in English - Safety assessment of shallow ground repositories of radiation wastes https://gostperevod.com/rb-011-2000.html RB 012-04 in English - Report structure and contents on the radiation safety condition at radiation hazardous sites https://gostperevod.com/rb-012-04.html RB 012-2000 in English - Requirements to the contents of the report on the radiation safety condition at radiation hazardous sites of national economy https://gostperevod.com/rb-012RB 013-2000 in English - Requirements to the Contents of an NPP Power Unit Decommissioning Programme https://gostperevod.com/rb-013-2000.html RB 014-2000 in English - Safety Ensuring in Radioactive Waste Management Generated from Mining, Processing and Use of Natural Resources https://gostperevod.com/rb-014RB 015-2000 in English - Requirements to the Composition, Contents and Procedure of Submission to the RF Gosatomnadzor of Information on Safety Status of Ships Nuclear Installations under Operation https://gostperevod.com/rb-015-2000.html RB 016-01 in English - Requirements to Nuclear and Radiation Safety Analysis Report of Removal of Spent Fuel Assemblies during Implementation of “Lepse” Decommissioning Project https://gostperevod.com/rb-016-01.html RB 017-01 in English - Requirements to the Quality Assurance Programme for Removal of Spent Fuel Assemblies during Implementation of “Lepse” Decommissioning Project https://gostperevod.com/rb-017-01.html RB 018-01 in English - Methodology of Neutron Control on External Surface of Pressure Vessels of WWER-type Reactors https://gostperevod.com/rb-018-01.html RB 019-01 in English - Seismic Hazard Evaluation for Sites of Nuclear and Radiation-hazardous Facilities Based on Geodynamic Data https://gostperevod.com/rb-019-01.html RB 020-01 in English - Assessment Methodology of Iodine Combinations Emissions into Atmosphere in the Event of Accident at VVER-1000 Reactor NPPs https://gostperevod.com/rb-020-01.html RB 021-01 in English - Damage rate estimation of nuclear reactor core (for external initial events of natural and man-caused character) https://gostperevod.com/rb-021-01.html RB 021-14 in English - Safety guide on nuclear energy use “Basic Recommendations to the Preparation of the Probabilistic Safety Analysis (Level 1 PSA) for NPP Power Unit in Case of Initiating Events Caused by Impacts of Natural and Man-Induced Origin” https://gostperevod.com/rb-021-14.html RB 022-01 in English - Recommendations to Assessment of Tornado Characteristics in Respect to Nuclear Facilities https://gostperevod.com/rb-022-01.html RB 023-02 in English - Recommendations to the Establishment of Acceptance Criteria for Storage and Disposal of the Conditioned Radioactive Waste https://gostperevod.com/rb-023RB 024-02 in English - Recommended practices for the execution of probabilistic safety analysis of nuclear plants of 1 level for internal initiating events (when dealing with a block in the mode of electricity output to the external network) https://gostperevod.com/rb-024-02.html RB 024-11 in English - Provision on General Recommendations to the Development of Probabilistic Safety Analysis (Level 1 PSA) in Case of Internal Initiating Events (for all operational modes of an NPP Unit) https://gostperevod.com/rb-024-11.html RB 025-03 in English - The Contents of the Annual Report of Operating Organization on Status Assessment of Nuclear and Radiation Safety of Nuclear Research Installations https://gostperevod.com/rb-025-03.html RB 025-15 in English - The Contents of the Annual Report of Operating Organization on Status Assessment of Nuclear and Radiation Safety of Nuclear Research Installations https://gostperevod.com/rb-025-15.html RB 026-04 in English - Methodological recommendations for the execution of physical inventory of nuclear materials on nuclear installations and nuclear materials storage facilities https://gostperevod.com/rb-026-04.html RB 027-04 in English - The Contents and Composition of the Report on Results of Comprehensive Examination of an NPP Power Unit for Extension of Its Lifetime https://gostperevod.com/rb-027-04.html RB 028-04 in English - Analysis of Non-compliances of an NPP Power Unit Status with the Requirements of Regulatory Documents in Force https://gostperevod.com/rb-028-04.html RB 029-04 in English - The Contents and Composition of Materials Justifying Residual Life-time of an NPP Power Unit Components for Extension of Its Service Life https://gostperevod.com/rb-029-04.html RB 030-04 in English - Analysis of Operating Experience during Lifetime Extension of an NPP Power Unit https://gostperevod.com/rb-030-04.html RB 031-04 in English - The Content and Composition of Safety Analysis Report in Nuclear Power Plant Decommissioning https://gostperevod.com/rb-031-04.html RB 032-04 in English - Basic Recommendations for Implementation of Probabilistic Safety Analysis for Nuclear Power Plant https://gostperevod.com/rb-032-04.html RB 033-04 in English - Scope and Content of the Integrated Survey Report for Ships with Nuclear Reactors during Operating Lifetime Extension https://gostperevod.com/rb-033RB 033-17 in English - Safety guide on nuclear energy use 'Recommendations on the Scope and Content of the Integrated Survey Report for Ships and Other Floating Vessels with Nuclear Reactors, and Nuclear Service Ships during Operating Lifetime Extension' https://gostperevod.com/rb-033-17.html RB 034-05 in English - Recommendations to Recruitment, Training, Proficiency Level Maintaining and Professional Development of Operating Personnel at Nuclear Fuel Cycle Facilities https://gostperevod.com/rb-034-05.html RB 035-05 in English - Composition and content of the report on safety justification of temporary radioactive waste storage facilities formed during the extraction, processing and use of mineral products https://gostperevod.com/rb-035-05.html RB 036-06 in English - Monitoring of Geological and Engineering Conditions for Siting of Nuclear Fuel Cycle Facilities https://gostperevod.com/rb-036-06.html RB 037-06 in English - Analysis of Control Results and Status Assessment in Respect to Nuclear and Radiation Safety of Nuclear Research Installations https://gostperevod.com/rbRB 038-06 in English - Analysis of Checks Results in Respect to Nuclear and Radiation Safety Status of Power Installations of Ships and Vessels under Operation https://gostperevod.com/rb-038-06.html RB 039-07 in English - Safety Ensuring in Transportation of Radioactive Materials (Reference materials to “Safety Rules in Transportation of Radioactive Materials”, NP-053-04) https://gostperevod.com/rb-039-07.html RB 040-09 in English - Design Ratio and Calculation Methodologies for Hydrodynamic and Thermal Performance of Components and Equipment of the Water-cooled Nuclear Power Installations https://gostperevod.com/rb-040-09.html RB 041-07 in English - Guide on Periodic Safety Assessment of a Nuclear Power Unit https://gostperevod.com/rb-041-07.html RB 042-07 in English - Methodology of Categorization of the Sealed Radionuclide Sources by Considering Potential Radiation Hazard https://gostperevod.com/rb-042-07.html RB 043-08 in English - The Content and Composition of Annual Reports in Respect to Nuclear and Radiation Safety Status of Nuclear Fuel Cycle Facilities https://gostperevod.com/rb043-08.html RB 043-13 in English - Safety guide on nuclear energy use 'The Content and Composition of Annual Reports in Respect to Nuclear and Radiation Safety Status of Nuclear Fuel Cycle Facilities' https://gostperevod.com/rb-043-13.html RB 044-09 in English - General Recommendations to the Probabilistic Safety Analysis (Level 2 PSA) for NPPs with WWER-type Reactors https://gostperevod.com/rb-044-09.html RB 045-08 in English - Dynamic Monitoring of Building Structures of Nuclear Facilities https://gostperevod.com/rb-045-08.html RB 046-08 in English - Monitoring of Meteorological and Aerological Conditions in the Location Area of Nuclear Facilities https://gostperevod.com/rb-046-08.html RB 047-08 in English - Methodology of Assessment the Safety Culture Level at Nuclear Fuel Cycle Facilities https://gostperevod.com/rb-047-08.html RB 047-16 in English - Safety guide on nuclear energy use 'Methodology of Assessment the Safety Culture Level at Nuclear Fuel Cycle Facilities' https://gostperevod.com/rb-047RB 048-09 in English - Life-time Extension of Transportation Packages Designed for Transport of Spent Nuclear Fuel https://gostperevod.com/rb-048-09.html RB 049-09 in English - Safety Assessment of Radioactive Waste Management at the Techa Cascade of Reservoirs during Radioactive Waste Processing and Storage https://gostperevod.com/rb-049-09.html RB 050-09 in English - Structure and content of safety justification report for solid radioactive waste storage https://gostperevod.com/rb-050-09.html RB 051-09 in English - Provision on the Development of the Quality Assurance Programmes in Design and Construction of Articles Delivered to Nuclear Facilities https://gostperevod.com/rb-051-09.html RB 051-10 in English - Provision on the Development of the Quality Assurance Programmes in Design and Construction of Articles Delivered to Nuclear Facilities https://gostperevod.com/rb-051-10.html RB 052-09 in English - Provision on transfer of nuclear materials to the category of radioactive wastes https://gostperevod.com/rb-052-09.html RB 052-10 in English - Provision on transfer of nuclear materials to the category of radioactive wastes https://gostperevod.com/rb-052-10.html RB 053-10 in English - Provision on the Accuracy Improvement in Respect to Prognostic Assessments of Radiation Characteristics of Environment Contamination and Radiation Exposures for Population and Personnel https://gostperevod.com/rb-053-10.html RB 054-09 in English - Provision on the Content and Composition of the Report on Radiation Safety Conditions in Organizations Operating Radionuclide Sources https://gostperevod.com/rb-054-09.html RB 055-10 in English - Provision on the Development of the Quality Assurance Programmes in Manufacturing of Articles Delivered to Nuclear Facilities https://gostperevod.com/rbRB 056-10 in English - Regulation for the execution of physical inventory of nuclear materials https://gostperevod.com/rb-056-10.html RB 057-10 in English - Provision on Design and Manufacturing of Fuel Elements and Fuel Assemblies with Uranium-Plutonium Fuel (MOX-fuel) https://gostperevod.com/rb-057RB 058-10 in English - Regulation on the structure and contents of safety provision report on sub-surface nuclear waste disposal sites https://gostperevod.com/rb-058-10.html RB 060-10 in English - Provision on Assessment of Fire and Explosion Safety of Technological Processes of Radiochemical Production https://gostperevod.com/rb-060-10.html RB 061-11 in English - Provision on Verification and Review of Software in the Field of “Neutron and Physical Calculations” https://gostperevod.com/rb-061-11.html RB 062-11 in English - Provision on the Structure and Contents of Safety Analysis Report for a Nuclear Research Installation Decommissioning https://gostperevod.com/rb-062RB 063-11 in English - Provision on the Structure and Contents of the Principal Program for a Nuclear Research Installation Decommissioning https://gostperevod.com/rb-063-11.html RB 064-11 in English - Provision on the Structure and Contents of Safety Analysis Report for Radiation Sources https://gostperevod.com/rb-064-11.html RB 065-11 in English - Provision on the data reception procedure on the nuclear material quantity for striking their balance and physical inventory results in the material balance areas https://gostperevod.com/rb-065-11.html RB 066-11 in English - Provision on Application of Mathematical Statistics Methods for Accounting and Control of Nuclear Materials https://gostperevod.com/rb-066-11.html RB 067-11 in English - Provision on the Contents of Safety Analysis Report for Nuclear Installations of Ships and other Vessels (Structures) and Coastal Infrastructure Objects https://gostperevod.com/rb-067-11.html RB 068-11 in English - Provision on General Recommendations to the Development of Probabilistic Safety Analysis (Level 2 PSA) for NPPs with RBMK-type Reactors https://gostperevod.com/rb-068-11.html RB 069-11 in English - Provision on the Content and Composition of the Report on Effectiveness Assessment of Physical Protection System at Nuclear Facility https://gostperevod.com/rb-069-11.html RB 070-11 in English - Provision on the Content and Composition of the Report on Vulnerabilities Analysis of a Nuclear Facility https://gostperevod.com/rb-070-11.html RB 071-11 in English - Provision on Radioactive Waste Inventory in Organization https://gostperevod.com/rb-071-11.html RB 072-11 in English - Provision on Radioactive Substances Inventory in Organization https://gostperevod.com/rb-072-11.html RB 073-12 in English - Provision on the Content and Composition of the Comprehensive Survey Documentation in Respect to Nuclear Research Installations during Life-time Extension https://gostperevod.com/rb-073-12.html RB 074-12 in English - Provision on Recommendations to Comparison of the Calculated and the Measured Reactivity during Nuclear Safety Substantiation of WWER-type Reactor Installations https://gostperevod.com/rb-074-12.html RB 075-12 in English - Calculation Ratio and Calculation Methodologies of Hydrodynamic and Thermal Characteristics of Components and Equipment of Nuclear Power Facilities with Liquid-Metal Coolant https://gostperevod.com/rb-075-12.html RB 076-12 in English - Safety guide 'General Recommendations for the Development of Probabilistic Safety Analysis (Level 1 PSA) in Case of Initiating Events at a Nuclear Unit Conditioned by On-site Fires and Flooding' https://gostperevod.com/rb-076-12.html RB 077-12 in English - Safety guide 'Data Development and Transfer within the Frames of System on Information Support to State Control of Nuclear Research Installations during Normal Operation' https://gostperevod.com/rb-077-12.html RB 078-12 in English - Safety guide 'Safety Ensuring in the Course of Decommissioning (Closure) of Tailing Ponds' https://gostperevod.com/rb-078-12.html RB 079-12 in English - Safety guide 'Final Survey and Clearance of Nuclear Research Installations from the Federal State Supervision in the Field of the Use of Atomic Energy' https://gostperevod.com/rb-079-12.html RB 080-13 in English - Safety guide on nuclear energy use 'Assessment of the Corrective Measures Effectiveness in Respect to Operational Violations at Nuclear Power Plants and Nuclear Research Installations and Analysis of Information Regarding NPPs and Nuclear Research Installations Operational Experience Feedback' https://gostperevod.com/rb-080RB 081-13 in English - Safety guide on nuclear energy use 'The Structure and Contents of Report on Comprehensive Engineering and Radiation Survey for Nuclear Power Plant Units Decommissioning' https://gostperevod.com/rb-081-13.html RB 082-13 in English - Safety guide on nuclear energy use 'Investigation and Accounting of Abnormalities in the Course of Materials Accounting and Control at Nuclear Facilities' https://gostperevod.com/rb-082-13.html RB 083-13 in English - Safety guide on nuclear energy use 'Identification of Reasons and Conditions of Requirements Violations in Respect to Safety Ensuring in the Course of the Use of Atomic Energy' https://gostperevod.com/rb-083-13.html RB 084-13 in English - Safety guide on nuclear energy use 'Minimization of the Secondary Contamination of Territories, Communication Routes and Transport Means during Accidents Consequences Elimination at Nuclear Facilities.

https://www.pdf-archive.com/2018/06/14/rb-in-english---safety-guide-on-nuclear-energy-use/

14/06/2018 www.pdf-archive.com