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calculation of reaction cross section for proton induced [(p, γ ), (p, n), (p, 2n), (p, 3n)] on molybdenum (mo-95) in di different energy regions

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dc.contributor.author Ibsa Beyene
dc.date.accessioned 2020-12-10T13:13:54Z
dc.date.available 2020-12-10T13:13:54Z
dc.date.issued 2017-10
dc.identifier.uri http://10.140.5.162//handle/123456789/2729
dc.description.abstract In this work calculation cross section reaction of Proton induced nuclear reaction [ 95Mo(p, γ)96Tc, 95Mo(p, n)95Tc, 95Mo(p,2n)94Tc, and 95Mo(p,3n)93Tc] at different energy ranges have been studied. The main contributing process for the formation of Technitium( Tc) radionuclide which are short half- life isotope. For theoretical excitation function the computer code COMPLET have been used. The theoretical results are compared with the experimental cross-sections obtained from EXFOR data source for the formation of compound nucleus. The present measurement over this energy range confirms the earlier published data. The used theoretical nuclear model codes can describe well the investigated reaction in the whole interested proton energy range. In this study, using nuclear reaction code (complet)-an Alice-91 based code experimental compound nucleus cross-sections are approximately reproduced. Then justifies the agreement between theoretical and experimental. en_US
dc.language.iso en en_US
dc.title calculation of reaction cross section for proton induced [(p, γ ), (p, n), (p, 2n), (p, 3n)] on molybdenum (mo-95) in di different energy regions en_US
dc.type Thesis en_US


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