Spallation-Fission Competition in Heaviest Elements; Helium IonInduced Reactions in Plutonium Isotopes

Spallation-Fission Competition in Heaviest Elements; Helium IonInduced Reactions in Plutonium Isotopes
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Release: 1956
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Excitation functions have been determined for the spallation and fission reactions induced in plutonium isotopes by 20 to 50 Mev helium ions. The method employed consisted of cyclotron bombardments of plutonium oxide followed by the chemical isolation and alpha or beta counting of radioactive reaction products. Formation cross sections are given where possible for the curium and americium spallation products corresponding to ([alpha], n), ([alpha],2n), ([alpha],3n), ([alpha],4n), ([alpha]5n), ([alpha], p), ([alpha], pn or d), ([alpha], p2n or t), and ([alpha], p3n) reactions in Pu238, Pu239, and Pu242. Fission yield curves and fission cross sections for Pu238 and Pu239 serve to define the characteristics of the ([alpha], f) reaction for plutonium isotopes. Chemical procedures are outlined for the separation of both spallation and fission product elements in a sequence of operations performed on the entire dissolved target.

Spallation-Fission Competition in Heaviest Elements; HeliumIon-Induced Reactions in Uranium Isotopes

Spallation-Fission Competition in Heaviest Elements; HeliumIon-Induced Reactions in Uranium Isotopes
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Release: 1957
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A radiochemical study of fission and spallation products produced by bombardment of U233, U235, and U238 with 18-46 Mev helium ions has been made. As in the case of similar studies using isotopes of plutonium as targets, most of the reaction cross section is taken up by fission. Also, the pronounced increase of the total cross section for ([alpha], xn) reactions with increasing mass number of the target that was observed for plutonium targets is observed for uranium targets.

Spallation-Fission Competition in Heaviest Elements; TritonProduction

Spallation-Fission Competition in Heaviest Elements; TritonProduction
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Release: 1957
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Stacked f o i l s of Au197, Th232, and U238 were bombarded, i n a series of experiments, with 48-Mev helium ions, 24-Mev deuterons, and 32-Mev protons. Tritium from each f o i l was collected and then measured by a gas-counting technique. The qualitative r e s u l t s indicate t h a t high-energy t r i t o n s are emitted i n r e l a t i v e l y large abundance from a l l targets and with each of the bombarding p a r t i c l e s . Cross sections f o r t r i t o n production from fissionable U 238 and Th232 and from non-f i s s ionable Au197 are comparable. The integrated (ci, t) cross sections thus determined for and 9lk-1' are nearly the same a s the integrated cross sections f o r the '(, pZn)' reactions as determined by measuring the yield of t h e product heavy isotopes i n radiochemical experiments. A l l of the f a c t s axe consistent with a picture of emission of high-energy t r i t o n s (whether due t o a stripping, pick-up, or other mechanism) i n which fissionable intermediate nuclei are formed mainly a t l e v e l s of excitation be-low t h e i r f i s s i o n thresholds.

Modern Alchemy

Modern Alchemy
Author: Glenn Theodore Seaborg
Publisher: World Scientific
Total Pages: 728
Release: 1994
Genre: Science
ISBN: 9789810214401

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During his distinguished career spanning more than 50 years, Nobel laureate (Chemistry) Glenn T Seaborg published over 500 works. This volume puts together about 100 of his selected papers. The papers are divided into five categories. Category I consists of papers which detail the discovery of 10 transuranium elements and numerous heavy isotopes of special importance. Category II papers describe the discovery of a number of isotopes which became the workhorses of nuclear medicine or found other applications. Papers in Category III describe how the chemical properties of transuranium elements were originally determined, how chemistry is applied in nuclear sciences, and other chemical investigations, including early work done with the great chemist G N Lewis. Papers in Category IV cover radioactive decay chains and nuclear systematics. Lastly, papers in Category V illustrate how the powerful methods of chemistry are used to explain nuclear reactions in low, intermediate and high energy nuclear physics.