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uranium_in_earth/supply_of_uranium1_399.txt | jLkVECtp/Wl5lnu3bEiGyjh2QyLqkO+HNj2AZ1NcwnYct1Elz9AyuHMDY8d9CMnReChVyv8Fkrp5j2l4wTdcZk1eix5Q7VubzMyGqie8kbKNyGyufAoS1o8yNCc2PbVBU1YZwA9BKmxrGh2H2ipggM | |
uranium_in_earth/radionuclide_basis1_53.txt | 17.5m12.9-3c0-.3 0-.7 0-1.1s0-.8-.1-1.2c-.1-.9-.4-1.7-.8-2.5s-1-1.5-1.8-2c-.9-.5-2-.8-3.4-.8-.8 0-1.5.1-2.3.3s-1.5.7-2.2 1.3-1.2 1.3-1.6 2.3-. | |
uranium_in_earth/supply_of_uranium1_115.txt | T5p4RXzO9lksbHF0XmBcJ1GfISe/gOwffhnvrxdQ6xA+6/ExtgiTIZ4+RdweQCHic1XfDUs7SgPzr9TCkXr6rIgkueANIokAJdkscZcU3+G91RcF2w+E3zuDd+to9ZY7mwBq6ntTkhp2QMTlW6Ky | |
uranium_in_earth/radionuclide_basis1_118.txt | -.7 0-1.1s0-.8-.1-1.2c-.1-.9-.4-1.7-.8-2.5s-1-1.5-1.8-2.1c-.9-.5-2-.8-3.4-.8-.8 0-1.5.1-2.3.3s-1.5.7-2.2 1.3-1.2 1.3-1.6 2.3-.7 2.2-.8 3.7z"></path | |
uranium_in_earth/supply_of_uranium1_123.txt | CpX5pRxRsHZkG6J0e++qtILcfCbaK2dXyqeveZgQi5RV9cGp9jGdRMKWZU64frzIENLhyY2Ng9vrySs94hokbmekPDvP10J5qEiv66EptD+AH9o+qa7s09WxV6FBX2s0kbIYHceuCtxWdSDqAG++/KKslNXx | |
uranium_in_earth/supply_of_uranium1_134.txt | 2RKlfOC0tOYuKJkUa+2UBWVt6nE3/pB2Pbfcab6dEkHwXJqQgicgoplGq8RwiKUuUswniwoeZ5cesZK/AuiNbiC69lqbu1VGn3X2UWYjy5wdNApXN/9xzOu6ch6R9ZpRisq+VjjFMPZxDWS/WYffbf | |
uranium_in_earth/radionuclide_basis5_19.txt | <svg class="icon icon--social" aria-hidden="true"><use xlink:href="/themes/epa_theme/images/sprite.artifact.svg#youtube-square"></use></svg></a>
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uranium_in_earth/supply_of_uranium2_16.txt | >
</td>
</tr>
<tr>
<th>Namibia</th>
<td>470,100</td>
<td>8%</td>
</tr>
<tr>
<th>South Africa</th>
<td>
<div align="center">320,900</div>
</td>
<td>
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uranium_in_earth/supply_of_uranium1_602.txt | MAUx7ex6mRrOEEp0JDVYgsnV9ige4nk0jTxiOF6WICbyEDGn6pEIT3XW6ZGj62Zipyl5ElmoxvHirGMcqsMPVVC0GpU5m9FMioZIhr/UVaGfQG9jCsIu0Y81v1xCPI8NrmrcPawbbC2olKu13yHvUPqNU4kkcvC859BO | |
uranium_in_earth/supply_of_uranium4_50.txt | as the economic concentrations we call mineral deposits. They also need to be reasonably extractable from their host minerals. By these measures, uranium compares very well with base and precious metals. Its average crustal abundance of 2.7 ppm is comparable with that of many other metals such as tin, tungsten, and mo... | |
uranium_in_earth/supply_of_uranium1_464.txt | LjKm66UbuU9MAPq3aobVDKryTwRFUihD6ZyBehbumNsOV5ISoe3FHZ/7y032zPZ+C+SWc8BPww5yHSW9qp5QTTMlgxvCwzXwS8NMtJuSr1VrYZzG0DdrCIUXtRBZ36lKH5oxKgPJk09dZHgGBQOOIKGvhsSaD0A+ | |
uranium_in_earth/supply_of_uranium1_92.txt | GXDpU6c5jNJXPrBWrO3kgBfBdwCOv1d7rXuOoLHy0335xXdKrtRAO9tS5QOg67SUHlpkK19BUFIJzOZZEMfbfnpTqo23Bl207Jx+OI72E+KOmKjxNRohnR74eUT2KtyUtxvy/7sz6nXEPbTBrsWvOBSAC/memG1m9 | |
uranium_in_earth/supply_of_uranium1_457.txt | 1R6+/mFdf5JLgpVPsuzBPALfREJKbj2yuFcTIEYjlBpl8UMbTtSmm1vDLl8jG242rxv2+SOHMakJ3yg+9z7qlTGNo6UeDNFTT07dVJWYVHosdM16yslI4XYA3idvd/1olzV6bgrzyGESpZpy76zpezUxLWY63dtPzsl+66 | |
uranium_in_earth/supply_of_uranium1_165.txt | MxT3aRvP8t9kOL37j6I29UMkrGtVIqC0waVEu8Oz7KUevLyq2wHB+SlW2ylz6T65qkFqonfz2UTyfxej+Zz2oCQC6gSzOnqqwaKsWMTZPAPuVug9NRac4PhWfsq/IBs+zd2Zvwrd4urSP9ztLOfP0VDUR7Id | |
uranium_in_earth/supply_of_uranium1_417.txt | bVnNypI3Ta2k+Ws/e3AFVnj3RzXh0lZpG7zBl9LrnqbFk1MIGYU4TYSr3PXRv51wrTTeZOm+kX+yNMs+6ZOpb3+ATZ9B+/WJxQfthR5sQ1qPSoL+97PQ9vvvXDFGFoyl4lPupvCUIRB1J3l6 | |
uranium_in_earth/supply_of_uranium1_503.txt | lymb49tUcDXqHpzes5mGBpVOBe9OgZUMrJ1ob5SzSCcvd839o3BMvrJstHi7hTUJily7TSfyTpWv2X4C0Ix0TMB3Vnb8Af8fOaYRM1Q5200NAWXQm6ilLpZVa4n7r2WYuI22wTAelIIDnhSUUUVmHJsDFOf8QwPmIN | |
uranium_in_earth/u_and_t2_14.txt | down in a process called radioactive decay. More than 99% of natural uranium exists in a form (isotope) called uranium-238 while more than 99% of natural thorium exists as thorium-232. These metals decay very slowly eventually to form lead. During the decay processes, a series of new substances are formed including ra... | |
uranium_in_earth/u_and_t1_14.txt | </li>
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uranium_in_earth/supply_of_uranium1_231.txt | JUMOdQ0wVtUaHmw+dN46oNRjo19d58vh+uvXlikSffbkdAdmQEiEEKLPsFyI6rMU5vATZpiHSLmWLezM7DQnjxqYRze2y6mEsWSZQLdCRBILlDDz3oQ9s+Wnnb9lhvhnjohz8WynThjj8UtxHDye1gFf1AUtFz | |
uranium_in_earth/supply_of_uranium1_645.txt | t51sV+5fLOwTo4LAtzYG/7kg7Y/8lpdUiuLFFUUOhg8JkDZHCs3Wf7clsIGyyBBDx/jNmCiIJR1d0/1LK4c6oIPg1+abd2m1RZOTzcprxAYHn58xvnTA3I9F7tUxqp+qxWbh6Ky/n2xJhoOC6Xh | |
uranium_in_earth/supply_of_uranium1_477.txt | qy9rKbCGPb7R7L/vMdpBGNz/rHagmrjx68MGAlz+VTXgfEINrFCXfkJ/a/0Bit6OtOx9KhRWd0pRXz/VKvDoDqHUX4YIjUaA/36nNnru39Kx4+ESX1JM6mohSg4xPxsdKPaSLBU5LIwJARL20w+TCgyjIX6 | |
uranium_in_earth/u_and_t3_3.txt | 2">
High
</td><td headers="table95222r1c3">
High
</td></tr><tr><td headers="table95222r1c1">
Melting point
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uranium_in_earth/supply_of_uranium1_471.txt | Ch7Oq+kKmBYcCNd16F0o644zJ+H+Rptf8x0CEXU5x3ufjWZ63g3MCloCczDa5Jig8y7QRc9cTZK/Bg6JB9bigGGzHhNV6HMuYGgo6LvGFFfRa4MV2DSAM+/L9IBIvbjAUQ+l4GwnanPr1tWKdi/XLNssiy8R | |
uranium_in_earth/supply_of_uranium1_348.txt | FghYApn6CBtGZUl7LlvXxRQVHLa7rsrdV6rEQRy2Wc64FNu7IZ84MdkH55pF3LVba64/dfi13Atnd3H+yKaVMxlQ3Mwd+NoVCvJaollMKzt2MKQy1IJk6C6k06E4BwQhPeq6hhKl2KE5Zeb0Sl0rOAezShhduzrLgYc/ | |
uranium_in_earth/radionuclide_basis1_80.txt | 5-4.2v-16.8h-4.3v-3.4z"></path><path d="m323.3 94.6c-.3-1.2-.5-2.5-.4-3.7-.5 1-1.1 1.8-1.7 2.4-.7.6-1.4 1.1-2 1.4-1.4.5-2.7.8-3.7.8-2.8 0-4.9-.8-6.4- | |
uranium_in_earth/supply_of_uranium1_191.txt | ARwPWayRIcM0MhMa0ZzLaWObeBFYL0ebd4arfNzS6U7OQt9hV2TeaGrFUNM6pb2chdD3+eUJzt0Kur/NwRP6FzMmkuw8ZMa5mxxyQETWeAqhXASBF4pnStKK+0VeUcuauFZfOn21Amd8zNEIwi/A/gNBDdjr4vHOn5 | |
uranium_in_earth/radionuclide_basis1_34.txt | 2-6.6.1-4.8 1.2-8.3 3.4-10.5 2.1-2.1 4.7-3.2 7.6-3.2 1.3 0 2.4.2 3.4.5.9.3 1.6.7 2.2 1.2.6.4 1.9 1.3 1.4s.6.8.7 1.1zm.1 23.1c0-1.9-.2-3.3-.5- | |
uranium_in_earth/supply_of_uranium4_34.txt | by the energy and other costs involved). Third, available reserves of 'non-renewable' resources are constantly being renewed, mostly faster than they are used.</p>
<p style="display: none;">There are three principal areas where resource predictions have faltered:</p>
<ul style="display: none;">
<li>predictions have... | |
uranium_in_earth/supply_of_uranium3_7.txt | <td>554,475</td>
</tr>
<tr>
<th>United States</th>
<td>378,038</td>
</tr>
<tr>
<th>USSR*</th>
<td>377,613</td>
</tr>
<tr>
<th>Kazakhstan</th>
<td | |
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uranium_in_earth/radionuclide_basis1_89.txt | 4-1.4 3.2-1.3 5.4v13.3h-4.6v-19.9z"></path><path d="m411.2 82.4c0-1.6.2-3.2.6-4.8s1.1-3 2-4.4c1-1.3 2.2-2.4 3.8-3.2s3.6-1.2 5.9-1.2c2.4 0 4.5.4 6.1 | |
uranium_in_earth/u_and_t1_18.txt | </ul>
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uranium_in_earth/supply_of_uranium1_64.txt | 7NnqZ63/6Hx2PGy7EdfQyolWPZKR3M2kM46X55oP8eFQGfsArQ0VTpkfGxEJ/JvrodC9eWSTa9JExUWrODoXSsLFzFp3XJmkUOikn3/tJh7f41SUAtpjtbl0Og1JsrPoepbWHT1DiO16fYauCvvXbHg | |
uranium_in_earth/supply_of_uranium1_495.txt | zlhuo5D/a+Admi9W+vCC7kjYRBRV7CQ9ck0DpxEKWp+Tc/aX7c+idSWA5b0S3pVAw/HkdNdyCEi7BgDAXYWi/6XSncGfO7sTyAe23Sg/uMSjVBCRJySbyfqZ2vBH6YSDPc6K+OmHpzxVJItgTDSNDJ | |
uranium_in_earth/supply_of_uranium1_294.txt | 3/IbJCdzzfR5E3xZR0hN7zxpX8Y2bWMuz8unq3lngZ0B6jfvIr2f5+unjsVm/jcy/tAy8cC7lliCTns1qb7aHJqmdKzLlNhgLbJKIwYaCVjOhnie5x95A+KkPWvIN63YA2jIhsIOpTi/5ZKDSkuPSZJ4 | |
uranium_in_earth/radionuclide_basis1_98.txt | 1.2-1.4-1.6s-1.6-.6-2.7-.6c-1.5 0-2.7.4-3.5 1.2-.9.8-1.5 1.7-1.9 2.8s-.6 2.2-.7 3.2c-.1 1.1-.2 1.8-.1 2.4 0 1.3.1 2.5.3 3.7s.5 2.3.9 3.3c.8 2 2.4 | |
uranium_in_earth/supply_of_uranium1_448.txt | /cfaDcAhg5mYw2vby5WjTsP3VOW8/bbahq1NoD4LlYkdHc3jpp+lhhzCSL72Z2UZXwpsjgGNUICa4uG5w5/lTBp0VKyp2tSTKyexGRjaikpLdw/tS/6qRlsC58ZLxAgBkI6I3wLWlnXq79M9MkVkB8YY | |
uranium_in_earth/supply_of_uranium1_95.txt | TFnWoigD/SheFVHZPWxINvDM6lBHQ0LjHc1YDV18RpcddWG+INjvcqIQzS0XF/L1t3wJ/tC0vLSDNR9ywxlaH+dl+dROqMFKeF9ba0CVVcA1g6MQRzBnKlP9fRaWS4ZwHMJA3EsGAKD551c9dO+zAacrxAcKft | |
uranium_in_earth/supply_of_uranium1_425.txt | xwft7rNB+zsVa4QwtjfcC3QQQ72Fp9xQobQ6+f/kqlZX8tMeTN67ZoiYUN58AzJEnot/1zCPEFHSiTCWK619veGHgWmjq5npXGUEGEy/wUpn/WlOaM9aHcwobaDdTmKFKgGifvdx9bdX//A/aqdOD0JRbHwRHjwPhL | |
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uranium_in_earth/supply_of_uranium1_511.txt | nFpVLFSqwdFrk/FzARlmxM7qxxrQ3TUVVDIGHbE2jjaoaB4OaeVkzta0hwr3T5Aybh3RPWsYayMsg/+d/RSApezoTL7JuYNJjwDrmzQTxW0LdhE0ZXAlZaEUWAitMQLcaHPY/F5YwDEVFq1D7XRjHQpaeXRF5hPBsLUmaT6mxg | |
uranium_in_earth/supply_of_uranium3_26.txt | In fact, plutonium is quickly recycled as MOX fuel, whereas the reprocessed uranium (RepU) is mostly stockpiled, but some 16,000 tonnes of RepU from Magnox reactors in the UK has been used to make about 1650 tonnes of enriched AGR fuel. In Belgium, France, Germany and Switzerland over 8000 tonnes of RepU has been recy... | |
uranium_in_earth/Uranium10_35.txt | .1099/mic.0.037143-0. PMID 20019082.
^
Nilgiriwala, K.S.; Alahari, A.; Rao, A. S. & Apte, S.K. (2008). "Cloning and Overexpression of Alkaline Phosphatase PhoK from Sphingomonas sp. Strain BSAR-1 for Bioprecipitation of Uranium from Alkaline Solutions". Applied and Environmental Microbiology. 74 (17): 55 | |
uranium_in_earth/radionuclide_basis1_4.txt | ner__header-action">Here’s how you know</p></div>
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uranium_in_earth/Uranium10_53.txt | o2502Z. doi:10.1103/PhysRevLett.126.152502. PMID 33929212. S2CID 231627674. Retrieved 15 May 2021.
^ Niwase, T.; Watanabe, Y. X.; Hirayama, Y.; et al. (2023). "Discovery of New Isotope U and Systematic High-Precision Atomic Mass Measurements of Neutron-Rich Pa-Pu Nuclei Produced via Multinucleon Transfer Re | |
uranium_in_earth/supply_of_uranium1_445.txt | LSoWMwMGsEIR3v7EtWL4s58flh9pGqGe7Yepu+RVNv7ww8ZTnFeT04oJynI1CFqQR/bk+VfuvO/qVcvD3Zm3vBtOtEOL9fZkmaSY8QfGAHi8V5p8XTjSH2vKPJ7qFmWUzBozswG6kHLRJH098k6 | |
uranium_in_earth/radionuclide_basis3_5.txt | -links protected-links"></a>Uranium in the Environment</h2>
<p>Uranium is present naturally in virtually all soil, rock and water. Rocks break down to form soil. Soil can be moved by water and blown by wind, which moves uranium into streams, lakes and surface water. More than 99 percent of the uranium found in the env... | |
uranium_in_earth/supply_of_uranium1_677.txt | ">Nuclear energy and climate change</a>
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uranium_in_earth/Uranium10_69.txt | .
^ Radon Exposures to Workers at the Fernald Feed Materials Production Center. Page reviewed: April 8, 2020. U.S. National Institute for Occupational Safety and Health (NIOSH)
^ Chart of the Nuclides, US Atomic Energy Commission 1968
^ Dart, Richard C. (2004). Medical Toxicology. Lippincott Williams & Wilkins. p. 1... | |
uranium_in_earth/radionuclide_basis1_56.txt | 6.8-2.1 1.6 0 3.3.3 5.8 1.7.6 2.9 1.6 3.7 3.1.4 1.4.6 2.6.6 3.7h-4.6c0-1.8-.6-3-1.7-3.5-1.1-.4-2.1-.6-3.1-.6-.2 0-.5 0-1 0s-1.1.2-1.7.4-1.1.5 | |
uranium_in_earth/radionuclide_basis1_26.txt | 4.6-.1.4-16c0-.9 0-1.7-.2-2.4-.1-.7-.5-1.3-1.1-1.9-1.2-1.2-2.6-1.8-4.3-1.8s-3.1.5-4.4 1.7-2 3.1-2.1 5.7l-.3 14.5-4.5-.1z"></path><path d="m72.9 8.6h5 | |
uranium_in_earth/supply_of_uranium4_11.txt | , but it then became uneconomic. Estimates of the amount available range from 9 to 22 million tonnes of uranium, though the 2022 edition of the <em>Red Book</em> tabulates only about 9.3 million tonnes.</p>
<p style="display: none;">With uranium as a minor by-product of phosphates, the potential supply is tied to... | |
uranium_in_earth/u_and_t2_11.txt | class="show caption Crop16x9">Uraninite or 'pitchblende' from Narbarlek, Northern Territory. R19144. Source: Geoscience Australia.</p>
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uranium_in_earth/supply_of_uranium1_284.txt | c5yaWYlL6i60gbUwH/Zr1Bbi4chvG//AQl6MpcNuhQUyTNHegnsQcslXOnnh9VWlMAcdQgYMfu91AMyVY17CV0NrPWTyPEBoyvZYHGz3D6vXWPDUT/mU9t9UCcLNFdiKnCK5oiFwvueQC44gNFpG6G5DkSH0Y | |
uranium_in_earth/supply_of_uranium1_48.txt | Zodsab1C8IEFO0QCZciByX6zcn+DyVw9hQCgNVFNMqYPuXY6c2bcGaOm/0gSv7+Q2eTNxHaGCQyDCI8yOOF7mV8YpO/DwW7iislsbKQT3voRZaI9owgah44rW4txl/3O3EhvM7qUaYELehHC72/SbwyZ3 | |
uranium_in_earth/Uranium10_1.txt | ". Pure and Applied Chemistry. doi:10.1515/pac-2019-0603. ISSN 1365-3075.
^ Th(-I) and U(-I) have been detected in the gas phase as octacarbonyl anions; see Chaoxian, Chi; Sudip, Pan; Jiaye, Jin; Luyan, Meng; Mingbiao, Luo; Lili, Zhao; Mingfei, Zhou; Gernot, Frenking (2019). "Octacarbonyl Ion Complexes of Actinides [A... | |
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uranium_in_earth/supply_of_uranium1_310.txt | RF9uENC+agSBA4rxyxfmM1i8xCuvt8ZNxKcSozyeLqs4BRMV+gFfqsEg76pRxobxi6qx9IL0+7zpHuGOgjYNRu4M3Ft15OCEuK7H1bkuImiL0DKTrJiGp3cZ8mV4MSNRh6SipmkGCRaryugO5sWrOetkmji/bLA | |
uranium_in_earth/supply_of_uranium1_238.txt | 9ErrnOkeZy4xtDnpKHRUy3caI1P9UEDue4D3a3u+2BWpoBb7LlQVxTheAUMgsFPR2EWPC5CuXwZLsFaA7E1yRd4mjstrRApOi8XJ4uxvpuP11bxGebNf6NNto4gTbs8kk1XovHR3aMl7agNKdZ/JomF9cUFTiev | |
uranium_in_earth/supply_of_uranium1_126.txt | Nbe4qtKlg1A2tUGGtSQnb29GadkP+IAyjenaUWTDszBFXXms3D56aXeZP4LMOH9It7GEC8ZplxyGXr+e5doLausLxvOo56VfrBbQl+gBn2xaR1Bxs3Hjb8BLENoV7m9q2VtaAGxM0VjdhxYQfxPpJBOramU | |
uranium_in_earth/supply_of_uranium1_38.txt | /xt7NS7jkFgWQSZJKiirZ9DXImwqkNuibQuc3BRTZWTiamyHGpSBPA57H3aCQCwgdA2GEYLxqyZlnZPsIIZkuYICM03qL1XLhsVQWaZ8tTvDQuFwJA5Yxc60x13d/eUom1bkDNdRGHdGzRMrqX5RuWyfQ043jPU | |
uranium_in_earth/supply_of_uranium1_37.txt | TH33mS0RqE74elmFBMaJ9B/RnPSdbVWvdnelCWpqy4KxQJBvdAe5QcE71zTsN6EaI0dODGgOu780rghtuOtb5ukjOIbUV7oYBkl9A33NPNiZ61Ywe5tuvnjAz30H/vbVIwal4FHQC3es6SqdL9niMvrQ0aC428BZAs | |
uranium_in_earth/supply_of_uranium1_441.txt | WUch7VhRjYCyCbrMERD6NWXFBKjYXhzWiHjkl7Vj5EtQt+A01io/Yz/e/1jdTOsG5iHOWW3PIelEe633N+tK8EF3uUKQS1rfAF4RwifHWjAv7I8nSyfkhrSp30QN69c/Pp7hNCGP/EpwD0Y3Zr5jiX1Yps | |
uranium_in_earth/supply_of_uranium1_155.txt | gNXxz9iZo6OHQSvGoMUlLjKoP+OvrAO1eO7oNSOWlqVxj4D3tVObircTQtCJD2EUJCFOWEAOMx46MayGzi2dvpSJDajbqWYKSJC1rjkMNPPhjyqRkez3tqDBIQy/W0GS3Xb3kai+HzE5UYeg2j4D5tvG8t0 | |
uranium_in_earth/supply_of_uranium1_289.txt | b2nPKMQlGQ2Dr73IpABvK93dvPQQ0r+NlD5up812WB0pweME5LZciVLFKcMbF7NpR4GqMer4hjPFXRAQqKEi4YL5YmcOzhgPUYudsI8JLG3WD/cPJijfJl0sFEDVgQ6eYrhP8n46GtCQYHyQ6v9fFjxBaf | |
uranium_in_earth/radionuclide_basis1_82.txt | 1.1-1.1-1.9-1.3s-1.6-.4-2.3-.4c-1.1 0-2.2-2.6.5-.7.3-1.2.7-1.5 1.2s-.5.9-.6 1.4-.2.9-.2 1.2h-4.6c.1-.7.2-1.4.4-2.3.2-.8.6-1.6 1.3-2.5. | |
uranium_in_earth/supply_of_uranium1_338.txt | 1YRT6WSO9xnis25G+KwOMRYP/tfNyGoAiPmhnDYUCzNBmV1hJ8lktjaypd+pA9cyItYlpHc4wl8fHEQECgfDkrs7ecZ+4xGmNDZwz4QHOhAI3s5OIxfKsGasnVWsQwok4sHfb/87y4Ghhlv18obZvUT21PjBJTHfFL | |
uranium_in_earth/supply_of_uranium1_372.txt | 1zcm0z3LfN4WbHwCt9NnAS2Y0YAKkhsncRDlrOvOWbVyIzEKAG5mV4FRzJmynfgtiNl6IDB8w1H7X+VsYWHDzAP7M5sIh8feahbQFHoWxi7UB9kPeB6BhdG6Nh0o12QouWltVC5Pfj9+ufh30EuuASCEs | |
uranium_in_earth/radionuclide_basis1_2.txt |
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uranium_in_earth/radionuclide_basis4_11.txt |
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uranium_in_earth/supply_of_uranium1_30.txt | vIE2XqdiHyMZi+CtSmYnbhd+RQ3NP/oypBVfJBVTfs6Qi/pw22JWtaXK0DKtENkISui040Pvzah9np2od36egMQzY0AI1BNOd71qqkAEJh5x4zmHMUn8NNfGSvedb5jGRHmbZnIZldetfYiUE7SzB6W4cqcZuX/wVfUN | |
uranium_in_earth/supply_of_uranium1_13.txt | qPecQ/m56cSJawePeT8vIA+ph/RwbQ9SPfs6VwP6I11fn+LSNpyQ4fWe7GyUznAWWUzwp8IsNUo8gFvaewCR6hhlJPxrKx9iE9jvNqI2mCVrW/usELgVoCzsEWgMDShSYukRhhJg4SbRZ74txyfSJn+3uWqZ | |
uranium_in_earth/supply_of_uranium1_135.txt | suAscwttwYEBktm187ZnGYUkT7FWBdLnAkMefk//NWRrZklAW6NkovO+H8oqVJ0rAyqs/kUw31nXftW00deZKpYPonlGZEM/F/AxZtNc+uAlG+cYjYAnqRN8o238BzXtEafB2iz2bTRMFF/NyQNkvbHd1bnCd58i | |
uranium_in_earth/Uranium10_25.txt | Mc-Graw-Hill. pp. 577–91. ISBN 978-0226109534.
^ Trenn, Thaddeus J. (1978). "Thoruranium (U-236) as the extinct natural parent of thorium: The premature falsification of an essentially correct theory". Annals of Science. 35 (6): 581–97. doi:10.1080/00033797800200441.
^
Tissot, François L. H.; Dauphas, Nicolas; Gr... | |
uranium_in_earth/supply_of_uranium1_666.txt |
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uranium_in_earth/supply_of_uranium1_635.txt | O5S/TRRn0Y2QQjugAkfEDRCBUIxVUWwMsi0AJW9cxEEXmX4eZSyTid8xT2xAB2jRr4RENmEDmBvFTOLqOCF7KsAFToHgp0++dyVSXJPebrJNDj5X4W3IaWRTNVnWLRIKW8As0koSmXymWyvtUfpUyzucBR5YGDk | |
uranium_in_earth/Uranium10_58.txt | ide Basics: Uranium". U.S. Environmental Protection Agency. 16 February 2023. Retrieved 19 April 2023.
^ "ToxFAQ for Uranium". Agency for Toxic Substances and Disease Registry. 18 March 2014. Retrieved 19 April 2023.
^ "CDC – NIOSH Pocket Guide to Chemical Hazards – Uranium (insoluble compounds, as U)". National Inst... | |
uranium_in_earth/supply_of_uranium1_592.txt | KsNQMnh1TmA67xoRS2EwQddtqMdTHYWFMluJNi4Ot19XdsYtZugr9gGKHjImOvb7pP/LDdB3VfQUWCnkT779VoENOkptS9RE5RJT32Rh9fclOKcQus1/BBmY2urGqeJwizrrcG27Q4KJyKlyDHu7O4PAIh6Q | |
uranium_in_earth/supply_of_uranium1_12.txt | 2rZ3in3SqCHSMLndKg6T0sbU/gduLFYLH1f4yqHpcWVvO1//Dq330G71UCcnNB93ZpZfvejv5P8Ruv1ckRCi4V5XnImU51+mum/2UKrPQiAqVlV4Gui3i0WXKhbD1/wJIvf3qmVFq7Q0KqWkzZRN | |
uranium_in_earth/supply_of_uranium1_299.txt | IJJNrSOgb8zDpQk8xjCvjisSPeG3y9skj10amTEgKyLuviD479hcfXVMR6XAlw86oPjLfHWBLlCW0cV8CBYD4pS3mA+NIEhBrraZ9vW6Z3IrNMNtOIAFk9cieyPZzM21o8h0FnedjnoHZwVYAqmDZs1o4C | |
uranium_in_earth/supply_of_uranium1_334.txt | dmD4ViplXB3pUvdyGbVmK7n0Wx/XNc78eA1gxfD2iJbLUCcr2FBs+yzxrjT/ZWLIu/XVpZVdahA61RHrnYHC7F/Lv323ZKvyl9Zyr8DoO662fammHvaRW1ROSXhmRxI/yDfCB4QQxmn7mrOa2oxPH5A5s0e5 | |
uranium_in_earth/supply_of_uranium1_195.txt | 9unZhC76Yoa7iGgzoYgeQ71yf9QbTd+CpgcIpxdL2TxODFGnr4hL63kBDUp8oTuHqBnuKfO6NUy/cR3Dzjt2yhf8sVxhy1IEch0dx+fHlQtd4vLo0c5jeL/xQaZFMLuVfXdQAtvFpYf5cZ+MwbOyU | |
uranium_in_earth/supply_of_uranium1_81.txt | +qbVBqzeu2h9Gj+T+0GdvaxEZsvQ09mqfiCksrWkDGe+jajjpn7K9i6hZpPzOJk6hF0kxwdHEtN7q/ZoCeBs2SdF5zWQ8Rxm3S/lWPWFIG2/XEW4oTI6D4+IanI5v5KgJ3PV+lbjfb8LMzUs | |
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uranium_in_earth/u_and_t3_10.txt | as in heat resistant ceramics. However, non-radioactive substitutes have been developed for many applications of thorium. Yttrium compounds have replaced thorium compounds in lamps and lanthanides, zirconium, and yttrium can substitute for thorium in alloys used in the aerospace technologies.</p>
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uranium_in_earth/supply_of_uranium4_15.txt | bsp;</p>
<p style="display: none;">Kvanefjeld in Greenland is the main REE deposit with major potential for uranium production, with Sorensen, Zone 3 and Steenstrupfjeld orebodies in the same Ilimaussac intrusive complex. Those four deposits have a total of 228,000 tU (May 2015, JORC-compliant), nearly half of it meas... | |
uranium_in_earth/supply_of_uranium4_37.txt | Supply and Use flow diagram" class="img-responsive" src="/getmedia/1f52ddd4-863c-4ed2-aa7d-d70bc14f4fd2/economic-adjustments-in-u.png.aspx"><br>
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<p style="display: none;">Numerous economists have studied resource trends to determine which measures should best reflect resource scarcity (Tilton, J. <em>On Bo... | |
uranium_in_earth/radionuclide_basis1_33.txt | 7-2 1.2-3.1 1.4-.5.1-1.2-1.5.3s-.9.1-1.4.1c-.4 0-.8 0-1.3-.1s-1.1-.2-1.7-.3c-1.1-.3-2.3-.9-3.4-1.8s-2.1-2.2-2.9-3.8c-.8-1.7-1.2-3.9-1. | |
uranium_in_earth/supply_of_uranium1_18.txt | 86EQ3aH9FM/GFx+UfVKMs6QhU+EvMUhcSRTMInPUYhA91juV1e8DyYiAjfDLwlCkbbrA71zisx21YiGURY+U6Wl1OaDVHlX68uHlcC1WEcXXCZh+YZriNBv5gxfDHLmeKzuFEoJ4mxmdIzZlcE9R+3JUp/Xcv | |
uranium_in_earth/supply_of_uranium1_584.txt | M5m7ElwuLm4jAWVlLqYp+KLhtQg/qcC1lzyId6m4wRTxHcq9ss+K0hLu8Etgtkr3zGWZDd9pckBPy/iCwmI10gmUqic2fieOstp8VmgSYK4Ouea7jEhuA5oxoUA8xcRQqt79SJClTEQgaVLmGzFwJvtt8dy | |
uranium_in_earth/supply_of_uranium1_575.txt | ziyZeNvtHZ1wzPat/OXGx+/FXFGOnsFLTstdJcaOqzFqzyLH7QO7SA3mxRG6bQkdRoraKWNhmAGtGwt8v8StoPZhq2vRUZFv7U90w3lVACtvrZ+cBlYWxu95POSsC+ywqkQECwKFygKl2QRd6eD25zjspIFy | |
uranium_in_earth/supply_of_uranium1_516.txt | YuQv57qFZ3dwc0qWkA5WWRGvGTUQbzKSQjZIamxDBiIhXdwiL3ddMVD5xf8HB8rb6J1aU8ljsgiEXqmjCmj20FQUXmqGmOy1b2faW+Iavzw2Ibbl49ipkeRcXaEMrLNZ87ORdjUZGFAQ8oqEMzKejp5t96PyhI | |
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uranium_in_earth/supply_of_uranium4_57.txt | particular material. In this sense, human ingenuity quite literally creates new resources, historically, currently and prospectively. That is the most fundamental level at which technology creates resources, by making particular minerals usable in new ways. Often these then substitute to some degree for others which a... | |
uranium_in_earth/Uranium10_20.txt | : Natural Nuclear Reactors". Office of Civilian Radioactive Waste Management. Archived from the original on 3 June 2004. Retrieved 28 June 2006.
^ Warneke, T.; Croudace, I. W.; Warwick, P. E. & Taylor, R. N. (2002). "A new ground-level fallout record of uranium and plutonium isotopes for northern temperate latitudes".... | |
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uranium_in_earth/Uranium10_9.txt | Depleted Uranium in the Gulf (II). Gulflink, official website of Force Health Protection & Readiness. 2000.
^ Emsley 2001, p. 480.
^ "Nuclear Weapon Design". Federation of American Scientists. 1998. Archived from the original on 26 December 2008. Retrieved 19 February 2007.
^ "Statement regarding the Good Morn... | |
uranium_in_earth/supply_of_uranium1_545.txt | OmLmVN8ynMz7UQjv3Hm/yLw5AOoegqX8oaW7RmZ/PjNfGCu29PXDMj9vnUyqBz02HCb0igOrOW1DD6qsSYKol++1LagSP677tbOcJorAnopMIxmUQ3xMrVgd55ymAVmtb0H2z2t8hz2vcqI+ToeJMlizNq3C |
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