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Translated in Donets, E. D.; Shchegolev, V. A.; Ermakov, V. A. (1965). “Synthesis of the isotope of element 103 (lawrencium) with mass number 256”. Soviet Atomic Energy19 (2): 109. doi:10.1007/BF01126414.
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Balasubramanian, K. (4 December 2001). “Potential energy surfaces of Lawrencium and Nobelium dihydrides (LrH2 and NoH2)”. Journal of Chemical Physics116 (9): 3568-75. Bibcode: 2002JChPh.116.3568B. doi:10.1063/1.1446029.
Kwarsick, Jeffrey T.; Pore, Jennifer L.; Gates, Jacklyn M.; Gregorich, Kenneth E.; Gibson, John K.; Jian, Jiwen; Pang, Gregory K.; Shuh, David K. (2021). “Assessment of the Second-Ionization Potential of Lawrencium: Investigating the End of the Actinide Series with a One-Atom-at-a-Time Gas-Phase Ion Chemistry Technique”. The Journal of Physical Chemistry A125 (31): 6818-6828. doi:10.1021/acs.jpca.1c01961.
Huang, T.; Seweryniak, D.; Back, B. B. (2022). “Discovery of the new isotope 251Lr: Impact of the hexacontetrapole deformation on single-proton orbital energies near the Z = 100 deformed shell gap”. Physical Review C106 (L061301). doi:10.1103/PhysRevC.106.L061301.
Gyanchandani, Jyoti; Sikka, S. K. (10 May 2011). “Physical properties of the 6 d -series elements from density functional theory: Close similarity to lighter transition metals”. Physical Review B83 (17): 172101. Bibcode: 2011PhRvB..83q2101G. doi:10.1103/PhysRevB.83.172101.
Balasubramanian, K. (4 December 2001). “Potential energy surfaces of Lawrencium and Nobelium dihydrides (LrH2 and NoH2)”. Journal of Chemical Physics116 (9): 3568-75. Bibcode: 2002JChPh.116.3568B. doi:10.1063/1.1446029.
“This Month in Lab History…Lawrencium Added to Periodic Table”. today.lbl.gov. Lawrence Berkeley National Laboratory (9 April 2013). 13 February 2021閲覧。 “Lawrencium (Lw) was first synthesized Feb. 14, 1961, by a team led by Ghiorso, who was co-discoverer of a record 12 chemical elements on the periodic table.”