Yan, X.; Cheng, Z.; Abdukerim, A.; et al. (2024). „Searching for two-neutrino and neutrinoless double beta decay of 134Xe with the PandaX-4T experiment”. Physical Review Letters. 132 (152502). arXiv:2312.15632. doi:10.1103/PhysRevLett.132.152502.
Beeman, J. W.; Bellini, F.; Cardani, L.; Casali, N.; Di Domizio, S.; Fiorini, E.; Gironi, L.; Nagorny, S. S.; Nisi, S.; Orio, F.; Pattavina, L.; Pessina, G.; Piperno, G.; Pirro, S.; Previtali, E.; Rusconi, C.; Tomei, C.; Vignati, M. (2013). „New experimental limits on the α decays of lead isotopes”. The European Physical Journal A. 49 (4). ISSN1434-6001. arXiv:1212.2422. doi:10.1140/epja/i2013-13050-7.
Akerib, D S; et al. (2020-10-01). „Search for two neutrino double electron capture of 124Xe and 126Xe in the full exposure of the LUX detector”. Journal of Physics G: Nuclear and Particle Physics. 47 (10): 105105. ISSN0954-3899. arXiv:1912.02742. doi:10.1088/1361-6471/ab9c2d.
Belli, P.; Bernabei, R.; Cappella, F.; Cerulli, R.; Danevich, F. A.; d’Angelo, S.; Incicchitti, A.; Kovtun, G. P.; Kovtun, N. G.; Laubenstein, M.; Poda, D. V.; Polischuk, O. G.; Shcherban, A. P.; Solopikhin, D. A.; Suhonen, J.; Tretyak, V. I. (2013-03-06). „Search for 2 β decays of 96 Ru and 104 Ru by ultralow-background HPGe γ spectrometry at LNGS: Final results”. Physical Review C. 87 (3). ISSN0556-2813. arXiv:1302.7134. doi:10.1103/PhysRevC.87.034607.
Danevich, F. A.; Hult, M.; Junghans, A.; Kasperovych, D. V.; Kropivyansky, B. N.; Lutter, G.; Marissens, G.; Polischuk, O. G.; Romaniuk, M. V.; Stroh, H.; Tessalina, S.; Tretyak, V. I.; Ware, B. (2022). „New limits on double-beta decay of 190Pt and 198Pt”. The European Physical Journal C. 82 (1). ISSN1434-6044. arXiv:2201.06555. doi:10.1140/epjc/s10052-022-09989-1.
Belli, P.; Bernabei, R.; Boiko, R. S.; Cappella, F.; Caracciolo, V.; Cerulli, R.; Danevich, F. A.; Di Marco, A.; Incicchitti, A.; Kropivyansky, B. N.; Laubenstein, M.; Nisi, S.; Poda, D. V.; Polischuk, O. G.; Tretyak, V. I. (2019). „First direct search for 2ϵ and ϵβ+ of 144Sm and 2β- decay of 154Sm”. The European Physical Journal A. 55 (11). ISSN1434-6001. arXiv:1910.02262. doi:10.1140/epja/i2019-12911-3.
Arnquist, I. J.; Avignone III, F. T.; Barabash, A. S.; Barton, C. J.; Bhimani, K. H.; Blalock, E.; Bos, B.; Busch, M.; Buuck, M.; Caldwell, T. S.; Christofferson, C. D.; Chu, P.-H.; Clark, M. L.; Cuesta, C.; Detwiler, J. A.; Efremenko, Yu.; Ejiri, H.; Elliott, S. R.; Giovanetti, G. K.; Goett, J.; Green, M. P.; Gruszko, J.; Guinn, I. S.; Guiseppe, V. E.; Haufe, C. R.; Henning, R.; Aguilar, D. Hervas; Hoppe, E. W.; Hostiuc, A.; Kim, I.; Kouzes, R. T.; Lannen V., T. E.; Li, A.; López-Castaño, J. M.; Massarczyk, R.; Meijer, S. J.; Meijer, W.; Oli, T. K.; Paudel, L. S.; Pettus, W.; Poon, A. W. P.; Radford, D. C.; Reine, A. L.; Rielage, K.; Rouyer, A.; Ruof, N. W.; Schaper, D. C.; Schleich, S. J.; Smith-Gandy, T. A.; Tedeschi, D.; Thompson, J. D.; Varner, R. L.; Vasilyev, S.; Watkins, S. L.; Wilkerson, J. F.; Wiseman, C.; Xu, W.; Yu, C.-H. (13. 10. 2023). „Constraints on the Decay of 180mTa”. Phys. Rev. Lett. 131 (15): 152501. arXiv:2306.01965. doi:10.1103/PhysRevLett.131.152501.CS1 одржавање: Формат датума (веза)
Sonzogni, Alejandro (2008). „Interactive Chart of Nuclides”. National Nuclear Data Center: Brookhaven National Laboratory. Архивирано из оригинала 2018-10-10. г. Приступљено 2013-05-03.
In his 1893 book, William T. Preyer also used the word "isotope" to denote similarities among elements. From Preyer, William T. (1893). Das genetische System der chemischen Elemente.. )
Yan, X.; Cheng, Z.; Abdukerim, A.; et al. (2024). „Searching for two-neutrino and neutrinoless double beta decay of 134Xe with the PandaX-4T experiment”. Physical Review Letters. 132 (152502). arXiv:2312.15632. doi:10.1103/PhysRevLett.132.152502.
Beeman, J. W.; Bellini, F.; Cardani, L.; Casali, N.; Di Domizio, S.; Fiorini, E.; Gironi, L.; Nagorny, S. S.; Nisi, S.; Orio, F.; Pattavina, L.; Pessina, G.; Piperno, G.; Pirro, S.; Previtali, E.; Rusconi, C.; Tomei, C.; Vignati, M. (2013). „New experimental limits on the α decays of lead isotopes”. The European Physical Journal A. 49 (4). ISSN1434-6001. arXiv:1212.2422. doi:10.1140/epja/i2013-13050-7.
Akerib, D S; et al. (2020-10-01). „Search for two neutrino double electron capture of 124Xe and 126Xe in the full exposure of the LUX detector”. Journal of Physics G: Nuclear and Particle Physics. 47 (10): 105105. ISSN0954-3899. arXiv:1912.02742. doi:10.1088/1361-6471/ab9c2d.
Belli, P.; Bernabei, R.; Cappella, F.; Cerulli, R.; Danevich, F. A.; d’Angelo, S.; Incicchitti, A.; Kovtun, G. P.; Kovtun, N. G.; Laubenstein, M.; Poda, D. V.; Polischuk, O. G.; Shcherban, A. P.; Solopikhin, D. A.; Suhonen, J.; Tretyak, V. I. (2013-03-06). „Search for 2 β decays of 96 Ru and 104 Ru by ultralow-background HPGe γ spectrometry at LNGS: Final results”. Physical Review C. 87 (3). ISSN0556-2813. arXiv:1302.7134. doi:10.1103/PhysRevC.87.034607.
Danevich, F. A.; Hult, M.; Junghans, A.; Kasperovych, D. V.; Kropivyansky, B. N.; Lutter, G.; Marissens, G.; Polischuk, O. G.; Romaniuk, M. V.; Stroh, H.; Tessalina, S.; Tretyak, V. I.; Ware, B. (2022). „New limits on double-beta decay of 190Pt and 198Pt”. The European Physical Journal C. 82 (1). ISSN1434-6044. arXiv:2201.06555. doi:10.1140/epjc/s10052-022-09989-1.
Belli, P.; Bernabei, R.; Boiko, R. S.; Cappella, F.; Caracciolo, V.; Cerulli, R.; Danevich, F. A.; Di Marco, A.; Incicchitti, A.; Kropivyansky, B. N.; Laubenstein, M.; Nisi, S.; Poda, D. V.; Polischuk, O. G.; Tretyak, V. I. (2019). „First direct search for 2ϵ and ϵβ+ of 144Sm and 2β- decay of 154Sm”. The European Physical Journal A. 55 (11). ISSN1434-6001. arXiv:1910.02262. doi:10.1140/epja/i2019-12911-3.
Arnquist, I. J.; Avignone III, F. T.; Barabash, A. S.; Barton, C. J.; Bhimani, K. H.; Blalock, E.; Bos, B.; Busch, M.; Buuck, M.; Caldwell, T. S.; Christofferson, C. D.; Chu, P.-H.; Clark, M. L.; Cuesta, C.; Detwiler, J. A.; Efremenko, Yu.; Ejiri, H.; Elliott, S. R.; Giovanetti, G. K.; Goett, J.; Green, M. P.; Gruszko, J.; Guinn, I. S.; Guiseppe, V. E.; Haufe, C. R.; Henning, R.; Aguilar, D. Hervas; Hoppe, E. W.; Hostiuc, A.; Kim, I.; Kouzes, R. T.; Lannen V., T. E.; Li, A.; López-Castaño, J. M.; Massarczyk, R.; Meijer, S. J.; Meijer, W.; Oli, T. K.; Paudel, L. S.; Pettus, W.; Poon, A. W. P.; Radford, D. C.; Reine, A. L.; Rielage, K.; Rouyer, A.; Ruof, N. W.; Schaper, D. C.; Schleich, S. J.; Smith-Gandy, T. A.; Tedeschi, D.; Thompson, J. D.; Varner, R. L.; Vasilyev, S.; Watkins, S. L.; Wilkerson, J. F.; Wiseman, C.; Xu, W.; Yu, C.-H. (13. 10. 2023). „Constraints on the Decay of 180mTa”. Phys. Rev. Lett. 131 (15): 152501. arXiv:2306.01965. doi:10.1103/PhysRevLett.131.152501.CS1 одржавање: Формат датума (веза)
Fleck, Alexander (1957). „Frederick Soddy”. Biographical Memoirs of Fellows of the Royal Society. 3: 203—216. doi:10.1098/rsbm.1957.0014. „p. 208: Up to 1913 we used the phrase 'radio elements chemically non-separable' and at that time the word isotope was suggested in a drawing-room discussion with Dr. Margaret Todd in the home of Soddy's father-in-law, Sir George Beilby.”
Westaway, Kenneth C. (2006). „Using kinetic isotope effects to determine the structure of the transition states of SN. 2 reactions”. Advances in Physical Organic Chemistry. 41: 217—273. ISBN978-0-12-033541-1. doi:10.1016/S0065-3160(06)41004-2.
Lynn KR, Yankwich PE (5. 8. 1961). „Isotope Fractionation at the Methyl Carbon in the Reactions of Cyanide Ion with Methyl Chloride and Methyl Bromide”. Journal of the American Chemical Society. 83 (15): 3220—3223. Bibcode:1961JAChS..83.3220L. doi:10.1021/ja01476a012.CS1 одржавање: Формат датума (веза)
Seeman, Jeffrey I.; Secor, Henry V.; Disselkamp, R.; Bernstein, E. R. (1992). „Conformational analysis through selective isotopic substitution: supersonic jet spectroscopic determination of the minimum energy conformation of o-xylene”. Journal of the Chemical Society, Chemical Communications (9): 713. doi:10.1039/C39920000713.
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Hult, Mikael; Wieslander, J. S.; Marissens, Gerd; Gasparro, Joël; Wätjen, Uwe; Misiaszek, Marcin (2009). „Search for the radioactivity of 180mTa using an underground HPGe sandwich spectrometer”. Applied Radiation and Isotopes. 67 (5): 918—21. PMID19246206. doi:10.1016/j.apradiso.2009.01.057.
Lal, D.; Peters, B. (1967). „Cosmic Ray Produced Radioactivity on the Earth”. Kosmische Strahlung II / Cosmic Rays II. Handbuch der Physik / Encyclopedia of Physics. 9 / 46 / 2. стр. 551—612. ISBN978-3-642-46081-4. doi:10.1007/978-3-642-46079-1_7.
Dickin, A.P. (2018). Radiogenic Isotope Geology. Cambridge University Press. doi:10.1017/9781316163009.
„IUPAC Goldbook”. Compendium of Chemical Terminology. doi:10.1351/goldbook.S05907. Приступљено 12. 7. 2019. „standard atomic weights: Recommended values of relative atomic masses of the elements revised biennially by the IUPAC Commission on Atomic Weights and Isotopic Abundances and applicable to elements in any normal sample with a high level of confidence. A normal sample is any reasonably possible source of the element or its compounds in commerce for industry and science and has not been subject to significant modification of isotopic composition within a geologically brief period.”CS1 одржавање: Формат датума (веза)
Blake, Michael E.; Bartlett, Kevin L.; Jones, Maitland (2003). „Am-Benzyne too-Benzyne Conversion through a 1,2-Shift of a Phenyl Group”. Journal of the American Chemical Society. 125 (21): 6485—6490. ISSN0002-7863. PMID12785789. doi:10.1021/ja0213672.
Fernandez, Irene; Cadisch, Georg (2003). „Discrimination against13C during degradation of simple and complex substrates by two white rot fungi”. Rapid Communications in Mass Spectrometry. 17 (23): 2614—2620. Bibcode:2003RCMS...17.2614F. ISSN0951-4198. PMID14648898. doi:10.1002/rcm.1234.
Fernandez, I.; Mahieu, N.; Cadisch, G. (2003). „Carbon isotopic fractionation during decomposition of plant materials of different quality”. Global Biogeochemical Cycles. 17 (3): n/a. Bibcode:2003GBioC..17.1075F. ISSN0886-6236. doi:10.1029/2001GB001834.
Ewe, Sharon M.L; da Silveira Lobo Sternberg, Leonel; Busch, David E (1999). „Water-use patterns of woody species in pineland and hammock communities of South Florida”. Forest Ecology and Management. 118 (1–3): 139—148. Bibcode:1999ForEM.118..139E. ISSN0378-1127. doi:10.1016/S0378-1127(98)00493-9.
Paul D, Skrzypek G, Fórizs I (2007). „Normalization of measured stable isotopic compositions to isotope reference scales - a review”. Rapid Commun. Mass Spectrom. 21 (18): 3006—14. Bibcode:2007RCMS...21.3006P. PMID17705258. doi:10.1002/rcm.3185.
Stellaard F, Elzinga H (2005). „Analytical techniques in biomedical stable isotope applications: (isotope ratio) mass spectrometry or infrared spectrometry?”. Isotopes in Environmental and Health Studies. 41 (4): 345—61. PMID16543190. doi:10.1080/10256010500384333.
Jamin, Eric; Guérin, Régis; Rétif, Mélinda; Lees, Michèle; Martin, Gérard J. (2003). „Improved Detection of Added Water in Orange Juice by Simultaneous Determination of the Oxygen-18/Oxygen-16 Isotope Ratios of Water and Ethanol Derived from Sugars”. J. Agric. Food Chem.51 (18): 5202—6. PMID12926859. doi:10.1021/jf030167m.
„Isoscapes to Address Large-Scale Earth Science Challenges”. Eos, transactions, American Geophysical Union. св. 90 бр. 13. 2009. стр. 109—116. doi:10.1029/2009EO130001.
Westaway, Kenneth C. (2006). „Using kinetic isotope effects to determine the structure of the transition states of SN. 2 reactions”. Advances in Physical Organic Chemistry. 41: 217—273. ISBN978-0-12-033541-1. doi:10.1016/S0065-3160(06)41004-2.
Poirier RA, Wang Y, Westaway KC (март 1994). „A Theoretical Study of the Relationship between Secondary .alpha.-Deuterium Kinetic Isotope Effects and the Structure of SN. 2 Transition States”. Journal of the American Chemical Society. 116 (6): 2526—2533. doi:10.1021/ja00085a037.CS1 одржавање: Формат датума (веза)
Jiang H, English AM (2002). „Quantitative analysis of the yeast proteome by incorporation of isotopically labeled leucine”. Journal of Proteome Research. 1 (4): 345—350. PMID12645890. doi:10.1021/pr025523f.
Ong SE, Blagoev B, Kratchmarova I, Kristensen DB, Steen H, Pandey A, Mann M (мај 2002). „Stable isotope labeling by amino acids in cell culture, SILAC, as a simple and accurate approach to expression proteomics”. Molecular & Cellular Proteomics. 1 (5): 376—386. PMID12118079. doi:10.1074/mcp.M200025-MCP200.CS1 одржавање: Формат датума (веза)
Lynn KR, Yankwich PE (5. 8. 1961). „Isotope Fractionation at the Methyl Carbon in the Reactions of Cyanide Ion with Methyl Chloride and Methyl Bromide”. Journal of the American Chemical Society. 83 (15): 3220—3223. Bibcode:1961JAChS..83.3220L. doi:10.1021/ja01476a012.CS1 одржавање: Формат датума (веза)
Meneguzzi, M.; Audouze, J.; Reeves, H. (1971). „The production of the elements Li, Be, B by galactic cosmic rays in space and its relation with stellar observations”. Astronomy and Astrophysics. 15: 337. Bibcode:1971A&A....15..337M.
Fernandez, Irene; Cadisch, Georg (2003). „Discrimination against13C during degradation of simple and complex substrates by two white rot fungi”. Rapid Communications in Mass Spectrometry. 17 (23): 2614—2620. Bibcode:2003RCMS...17.2614F. ISSN0951-4198. PMID14648898. doi:10.1002/rcm.1234.
Fernandez, I.; Mahieu, N.; Cadisch, G. (2003). „Carbon isotopic fractionation during decomposition of plant materials of different quality”. Global Biogeochemical Cycles. 17 (3): n/a. Bibcode:2003GBioC..17.1075F. ISSN0886-6236. doi:10.1029/2001GB001834.
Ewe, Sharon M.L; da Silveira Lobo Sternberg, Leonel; Busch, David E (1999). „Water-use patterns of woody species in pineland and hammock communities of South Florida”. Forest Ecology and Management. 118 (1–3): 139—148. Bibcode:1999ForEM.118..139E. ISSN0378-1127. doi:10.1016/S0378-1127(98)00493-9.
Paul D, Skrzypek G, Fórizs I (2007). „Normalization of measured stable isotopic compositions to isotope reference scales - a review”. Rapid Commun. Mass Spectrom. 21 (18): 3006—14. Bibcode:2007RCMS...21.3006P. PMID17705258. doi:10.1002/rcm.3185.
IUPAC (Connelly, N. G.; Damhus, T.; Hartshorn, R. M.; and Hutton, A. T.), Nomenclature of Inorganic Chemistry – IUPAC Recommendations 2005, The Royal Society of Chemistry, 2005; IUPAC (McCleverty, J. A.; and Connelly, N. G.), Nomenclature of Inorganic Chemistry II. Recommendations 2000, The Royal Society of Chemistry, 2001; IUPAC (Leigh, G. J.), Nomenclature of Inorganic Chemistry (recommendations 1990), Blackwell Science, 1990; IUPAC, Nomenclature of Inorganic Chemistry, Second EditionАрхивирано на сајту Wayback Machine (3. март 2016), 1970; probably in the 1958 first edition as well
IUPAC (Connelly, N. G.; Damhus, T.; Hartshorn, R. M.; and Hutton, A. T.), Nomenclature of Inorganic Chemistry – IUPAC Recommendations 2005, The Royal Society of Chemistry, 2005; IUPAC (McCleverty, J. A.; and Connelly, N. G.), Nomenclature of Inorganic Chemistry II. Recommendations 2000, The Royal Society of Chemistry, 2001; IUPAC (Leigh, G. J.), Nomenclature of Inorganic Chemistry (recommendations 1990), Blackwell Science, 1990; IUPAC, Nomenclature of Inorganic Chemistry, Second EditionАрхивирано 2016-03-03 на сајту Wayback Machine, 1970; probably in the 1958 first edition as well
pac.iupac.org
IUPAC (Connelly, N. G.; Damhus, T.; Hartshorn, R. M.; and Hutton, A. T.), Nomenclature of Inorganic Chemistry – IUPAC Recommendations 2005, The Royal Society of Chemistry, 2005; IUPAC (McCleverty, J. A.; and Connelly, N. G.), Nomenclature of Inorganic Chemistry II. Recommendations 2000, The Royal Society of Chemistry, 2001; IUPAC (Leigh, G. J.), Nomenclature of Inorganic Chemistry (recommendations 1990), Blackwell Science, 1990; IUPAC, Nomenclature of Inorganic Chemistry, Second EditionАрхивирано на сајту Wayback Machine (3. март 2016), 1970; probably in the 1958 first edition as well
IUPAC (Connelly, N. G.; Damhus, T.; Hartshorn, R. M.; and Hutton, A. T.), Nomenclature of Inorganic Chemistry – IUPAC Recommendations 2005, The Royal Society of Chemistry, 2005; IUPAC (McCleverty, J. A.; and Connelly, N. G.), Nomenclature of Inorganic Chemistry II. Recommendations 2000, The Royal Society of Chemistry, 2001; IUPAC (Leigh, G. J.), Nomenclature of Inorganic Chemistry (recommendations 1990), Blackwell Science, 1990; IUPAC, Nomenclature of Inorganic Chemistry, Second EditionАрхивирано 2016-03-03 на сајту Wayback Machine, 1970; probably in the 1958 first edition as well
„IUPAC Goldbook”. Compendium of Chemical Terminology. doi:10.1351/goldbook.S05907. Приступљено 12. 7. 2019. „standard atomic weights: Recommended values of relative atomic masses of the elements revised biennially by the IUPAC Commission on Atomic Weights and Isotopic Abundances and applicable to elements in any normal sample with a high level of confidence. A normal sample is any reasonably possible source of the element or its compounds in commerce for industry and science and has not been subject to significant modification of isotopic composition within a geologically brief period.”CS1 одржавање: Формат датума (веза)
Hult, Mikael; Wieslander, J. S.; Marissens, Gerd; Gasparro, Joël; Wätjen, Uwe; Misiaszek, Marcin (2009). „Search for the radioactivity of 180mTa using an underground HPGe sandwich spectrometer”. Applied Radiation and Isotopes. 67 (5): 918—21. PMID19246206. doi:10.1016/j.apradiso.2009.01.057.
Blake, Michael E.; Bartlett, Kevin L.; Jones, Maitland (2003). „Am-Benzyne too-Benzyne Conversion through a 1,2-Shift of a Phenyl Group”. Journal of the American Chemical Society. 125 (21): 6485—6490. ISSN0002-7863. PMID12785789. doi:10.1021/ja0213672.
Fernandez, Irene; Cadisch, Georg (2003). „Discrimination against13C during degradation of simple and complex substrates by two white rot fungi”. Rapid Communications in Mass Spectrometry. 17 (23): 2614—2620. Bibcode:2003RCMS...17.2614F. ISSN0951-4198. PMID14648898. doi:10.1002/rcm.1234.
Paul D, Skrzypek G, Fórizs I (2007). „Normalization of measured stable isotopic compositions to isotope reference scales - a review”. Rapid Commun. Mass Spectrom. 21 (18): 3006—14. Bibcode:2007RCMS...21.3006P. PMID17705258. doi:10.1002/rcm.3185.
Stellaard F, Elzinga H (2005). „Analytical techniques in biomedical stable isotope applications: (isotope ratio) mass spectrometry or infrared spectrometry?”. Isotopes in Environmental and Health Studies. 41 (4): 345—61. PMID16543190. doi:10.1080/10256010500384333.
Jamin, Eric; Guérin, Régis; Rétif, Mélinda; Lees, Michèle; Martin, Gérard J. (2003). „Improved Detection of Added Water in Orange Juice by Simultaneous Determination of the Oxygen-18/Oxygen-16 Isotope Ratios of Water and Ethanol Derived from Sugars”. J. Agric. Food Chem.51 (18): 5202—6. PMID12926859. doi:10.1021/jf030167m.
Jiang H, English AM (2002). „Quantitative analysis of the yeast proteome by incorporation of isotopically labeled leucine”. Journal of Proteome Research. 1 (4): 345—350. PMID12645890. doi:10.1021/pr025523f.
Ong SE, Blagoev B, Kratchmarova I, Kristensen DB, Steen H, Pandey A, Mann M (мај 2002). „Stable isotope labeling by amino acids in cell culture, SILAC, as a simple and accurate approach to expression proteomics”. Molecular & Cellular Proteomics. 1 (5): 376—386. PMID12118079. doi:10.1074/mcp.M200025-MCP200.CS1 одржавање: Формат датума (веза)
Rades D, Stalpers LJ, Veninga T, Schulte R, Hoskin PJ, Obralic N, et al. (мај 2005). „Evaluation of five radiation schedules and prognostic factors for metastatic spinal cord compression”. Journal of Clinical Oncology. 23 (15): 3366—3375. PMID15908648. doi:10.1200/JCO.2005.04.754.CS1 одржавање: Формат датума (веза)
Rades D, Panzner A, Rudat V, Karstens JH, Schild SE (новембар 2011). „Dose escalation of radiotherapy for metastatic spinal cord compression (MSCC) in patients with relatively favorable survival prognosis”. Strahlentherapie und Onkologie. 187 (11): 729—735. PMID22037654. S2CID19991034. doi:10.1007/s00066-011-2266-y.CS1 одржавање: Формат датума (веза)
Rades D, Šegedin B, Conde-Moreno AJ, Garcia R, Perpar A, Metz M, et al. (фебруар 2016). „Radiotherapy With 4 Gy × 5 Versus 3 Gy × 10 for Metastatic Epidural Spinal Cord Compression: Final Results of the SCORE-2 Trial (ARO 2009/01)”. Journal of Clinical Oncology. 34 (6): 597—602. PMID26729431. doi:10.1200/JCO.2015.64.0862.CS1 одржавање: Формат датума (веза)
nobelprize.org
Soddy, Frederick (12. 12. 1922). „The origins of the conceptions of isotopes”(PDF). Nobelprize.org. стр. 393. Приступљено 9. 1. 2019. „Thus the chemically identical elements - or isotopes, as I called them for the first time in this letter to Nature, because they occupy the same place in the Periodic Table ...”CS1 одржавање: Формат датума (веза)
IUPAC (Connelly, N. G.; Damhus, T.; Hartshorn, R. M.; and Hutton, A. T.), Nomenclature of Inorganic Chemistry – IUPAC Recommendations 2005, The Royal Society of Chemistry, 2005; IUPAC (McCleverty, J. A.; and Connelly, N. G.), Nomenclature of Inorganic Chemistry II. Recommendations 2000, The Royal Society of Chemistry, 2001; IUPAC (Leigh, G. J.), Nomenclature of Inorganic Chemistry (recommendations 1990), Blackwell Science, 1990; IUPAC, Nomenclature of Inorganic Chemistry, Second EditionАрхивирано на сајту Wayback Machine (3. март 2016), 1970; probably in the 1958 first edition as well
IUPAC (Connelly, N. G.; Damhus, T.; Hartshorn, R. M.; and Hutton, A. T.), Nomenclature of Inorganic Chemistry – IUPAC Recommendations 2005, The Royal Society of Chemistry, 2005; IUPAC (McCleverty, J. A.; and Connelly, N. G.), Nomenclature of Inorganic Chemistry II. Recommendations 2000, The Royal Society of Chemistry, 2001; IUPAC (Leigh, G. J.), Nomenclature of Inorganic Chemistry (recommendations 1990), Blackwell Science, 1990; IUPAC, Nomenclature of Inorganic Chemistry, Second EditionАрхивирано 2016-03-03 на сајту Wayback Machine, 1970; probably in the 1958 first edition as well
Sonzogni, Alejandro (2008). „Interactive Chart of Nuclides”. National Nuclear Data Center: Brookhaven National Laboratory. Архивирано из оригинала 2018-10-10. г. Приступљено 2013-05-03.
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