Fermium (German Wikipedia)

Analysis of information sources in references of the Wikipedia article "Fermium" in German language version.

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  • A. Ghiorso, S. G. Thompson, G. H. Higgins, G. T. Seaborg (Radiation Laboratory and Department of Chemistry, University of California, Berkeley, California), M. H. Studier, P. R. Fields, S. M. Fried, H. Diamond, J. F. Mech, G. L. Pyle, J. R. Huizenga, A. Hirsch, W. M. Manning (Argonne National Laboratory, Lemont, Illinois), C. I. Browne, H. L. Smith, R. W. Spence (Los Alamos Scientific Laboratory, Los Alamos, New Mexico): New Elements Einsteinium and Fermium, Atomic Numbers 99 and 100, in: Physical Review, 1955, 99 (3), S. 1048–1049 (doi:10.1103/PhysRev.99.1048; Maschinoskript (9. Juni 1955), Lawrence Berkeley National Laboratory. Paper UCRL-3036).

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  • Eintrag zu fermium in Kramida, A., Ralchenko, Yu., Reader, J. und NIST ASD Team (2019): NIST Atomic Spectra Database (ver. 5.7.1). Hrsg.: NIST, Gaithersburg, MD. doi:10.18434/T4W30F (physics.nist.gov/asd). Abgerufen am 13. Juni 2020.
  • Albert Ghiorso, G. Bernard Rossi, Bernard G. Harvey, Stanley G. Thompson: Reactions of U238 with Cyclotron-Produced Nitrogen Ions, in: Physical Review, 1954, 93 (1), S. 257–257 (doi:10.1103/PhysRev.93.257).
  • S. G. Thompson, A. Ghiorso, B. G. Harvey, G. R. Choppin: Transcurium Isotopes Produced in the Neutron Irradiation of Plutonium, in: Physical Review, 1954, 93 (4), S. 908–908 (doi:10.1103/PhysRev.93.908).
  • B. G. Harvey, S. G. Thompson, A. Ghiorso, G. R. Choppin: Further Production of Transcurium Nuclides by Neutron Irradiation, in: Physical Review, 1954, 93 (5), S. 1129–1129 (doi:10.1103/PhysRev.93.1129).
  • M. H. Studier, P. R. Fields, H. Diamond, J. F. Mech, A. M. Friedman, P. A. Sellers, G. Pyle, C. M. Stevens, L. B. Magnusson, J. R. Huizenga: Elements 99 and 100 from Pile-Irradiated Plutonium, in: Physical Review, 1954, 93 (6), S. 1428–1428 (doi:10.1103/PhysRev.93.1428).
  • P. R. Fields, M. H. Studier, J. F. Mech, H. Diamond, A. M. Friedman, L. B. Magnusson, J. R. Huizenga: Additional Properties of Isotopes of Elements 99 and 100, in: Physical Review, 1954, 94 (1), S. 209–210 (doi:10.1103/PhysRev.94.209).
  • G. R. Choppin, S. G. Thompson, A. Ghiorso, B. G. Harvey: Nuclear Properties of Some Isotopes of Californium, Elements 99 and 100, in: Physical Review, 1954, 94 (4), S. 1080–1081 (doi:10.1103/PhysRev.94.1080).
  • Hugo Atterling, Wilhelm Forsling, Lennart W. Holm, Lars Melander, Björn Åström: Element 100 Produced by Means of Cyclotron-Accelerated Oxygen Ions, in: Physical Review, 1954, 95 (2), S. 585–586 (doi:10.1103/PhysRev.95.585.2).
  • S. G. Thompson, B. G. Harvey, G. R. Choppin, G. T. Seaborg: Chemical Properties of Elements 99 and 100, in: J. Am. Chem. Soc., 1954, 76 (24), S. 6229–6236 (doi:10.1021/ja01653a004).
  • A. Ghiorso, S. G. Thompson, G. H. Higgins, G. T. Seaborg (Radiation Laboratory and Department of Chemistry, University of California, Berkeley, California), M. H. Studier, P. R. Fields, S. M. Fried, H. Diamond, J. F. Mech, G. L. Pyle, J. R. Huizenga, A. Hirsch, W. M. Manning (Argonne National Laboratory, Lemont, Illinois), C. I. Browne, H. L. Smith, R. W. Spence (Los Alamos Scientific Laboratory, Los Alamos, New Mexico): New Elements Einsteinium and Fermium, Atomic Numbers 99 and 100, in: Physical Review, 1955, 99 (3), S. 1048–1049 (doi:10.1103/PhysRev.99.1048; Maschinoskript (9. Juni 1955), Lawrence Berkeley National Laboratory. Paper UCRL-3036).
  • P. R. Fields, M. H. Studier, H. Diamond, J. F. Mech, M. G. Inghram, G. L. Pyle, C. M. Stevens, S. Fried, W. M. Manning (Argonne National Laboratory, Lemont, Illinois); A. Ghiorso, S. G. Thompson, G. H. Higgins, G. T. Seaborg (University of California, Berkeley, California): Transplutonium Elements in Thermonuclear Test Debris, in: Physical Review, 1956, 102 (1), S. 180–182 (doi:10.1103/PhysRev.102.180).
  • G. Audi, O. Bersillon, J. Blachot, A. H. Wapstra: The NUBASE evaluation of nuclear and decay properties, in: Nuclear Physics A, 729, 2003, S. 3–128. doi:10.1016/j.nuclphysa.2003.11.001. (PDF; 1,0 MB).
  • C. E. Porter, F. D. Riley, Jr., R. D. Vandergrift, L. K. Felker: Fermium Purification Using Teva™ Resin Extraction Chromatography, in: Sep. Sci. Technol., 1997, 32 (1–4), S. 83–92 (doi:10.1080/01496399708003188).
  • M. Sewtz, H. Backe, A. Dretzke, G. Kube, W. Lauth, P. Schwamb, K. Eberhardt, C. Grüning, P. Thörle, N. Trautmann, P. Kunz, J. Lassen, G. Passler, C. Z. Dong, S. Fritzsche, R. G. Haire: First Observation of Atomic Levels for the Element Fermium (Z = 100), in: Phys. Rev. Lett., 2003, 90 (16), S. 163002 (doi:10.1103/PhysRevLett.90.163002).
  • G. R. Choppin, B. G. Harvey, S. G. Thompson: A new eluant for the separation of the actinide elements, in: J. Inorg. Nucl. Chem., 1956, 2 (1), S. 66–68 (doi:10.1016/0022-1902(56)80105-X).
  • M. Jones, R. P. Schuman, J. P. Butler, G. Cowper, T. A. Eastwood, H. G. Jackson: Isotopes of Einsteinium and Fermium Produced by Neutron Irradiation of Plutonium, in: Physical Review, 1956, 102 (1), S. 203–207 (doi:10.1103/PhysRev.102.203).
  • L. I. Guseva, K. V. Filippova, Yu. B. Gerlit, V. A. Druin, B. F. Myasoedov, N. I. Tarantin: Experiments on the Production of Einsteinium and Fermium with a Cyclotron, in: Journal of Nuclear Energy, 1954, 3 (4), S. 341–346 (übersetzt im November 1956) (doi:10.1016/0891-3919(56)90064-X).
  • N. B. Mikheev, V. I. Spitsyn, A. N. Kamenskaya, N. A. Konovalova, I. A. Rumer, L. N. Auerman, A. M. Podorozhnyi: Determination of oxidation potential of the pair Fm2+/Fm3+, in: Inorg. Nucl. Chem. Lett., 1977, 13 (12), S. 651–656 (doi:10.1016/0020-1650(77)80074-3).
  • K. Samhoun, F. David, R. L. Hahn, G. D. O’Kelley, J. R. Tarrant, D. E. Hobart: Electrochemical study of mendelevium in aqueous solution: No evidence for monovalent ions, in: J. Inorg. Nucl. Chem., 1979, 41 (12), S. 1749–1754 (doi:10.1016/0022-1902(79)80117-7).
  • Jaromír Malý: The amalgamation behaviour of heavy elements 1. Observation of anomalous preference in formation of amalgams of californium, einsteinium, and fermium, in: Inorg. Nucl. Chem. Lett., 1967, 3 (9), S. 373–381 (doi:10.1016/0020-1650(67)80046-1).
  • N. B. Mikheev, V. I. Spitsyn, A. N. Kamenskaya, B. A. Gvozdec, V. A. Druin, I. A. Rumer, R. A. Dyachkova, N. A. Rozenkevitch, L. N. Auerman: Reduction of fermium to divalent state in chloride aqueous ethanolic solutions, in: Inorg. Nucl. Chem. Lett., 1972, 8 (11), S. 929–936 (doi:10.1016/0020-1650(72)80202-2).
  • E. K. Hulet, R. W. Lougheed, P. A. Baisden, J. H. Landrum, J. F. Wild, R. F. Lundqvist: Non-observance of monovalent Md, in: J. Inorg. Nucl. Chem., 1979, 41 (12), S. 1743–1747 (doi:10.1016/0022-1902(79)80116-5).
  • Robert Lundqvist, E. K. Hulet, T. A. Baisden: Electromigration Method in Tracer Studies of Complex Chemistry. II. Hydrated Radii and Hydration Numbers of Trivalent Actinides, in: Acta Chem. Scand., Ser. A, 1981, 35, S. 653–661 (doi:10.3891/acta.chem.scand.35a-0653).

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  • Die Werte der atomaren und physikalischen Eigenschaften (Infobox) sind, wenn nicht anders angegeben, entnommen aus: Robert J. Silva: Fermium, Mendelevium, Nobelium, and Lawrencium (Memento vom 17. Juli 2010 im Internet Archive), in: Lester R. Morss, Norman M. Edelstein, Jean Fuger (Hrsg.): The Chemistry of the Actinide and Transactinide Elements, Springer, Dordrecht 2006, ISBN 1-4020-3555-1, S. 1621–1651.
  • Robert J. Silva: Fermium, Mendelevium, Nobelium, and Lawrencium (Memento vom 17. Juli 2010 im Internet Archive), in: Lester R. Morss, Norman M. Edelstein, Jean Fuger (Hrsg.): The Chemistry of the Actinide and Transactinide Elements, 3. Auflage, Springer, Dordrecht 2006, Band 3, S. 1621–1651.

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