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NSR database version of April 29, 2024.

Search: Author = B.A.Martsynkevich

Found 3 matches.

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2011AD18      Eur.Phys.J. A 47, 85 (2011)

J.Adam, C.Bhatia, K.Katovsky, V.Kumar, M.Majerle, V.S.Pronskikh, A.M.Khilmanovich, B.A.Martsynkevich, I.V.Zhuk, V.M.Golovatiouk, W.Westmeier, A.A.Solnyshkin, V.M.Tsoupko-Sitnikov, A.S.Potapenko

A study of reaction rates of (n, f), (n, γ) and (n, 2n) reactions in natU and 232Th by the neutron fluence produced in the graphite set-up (GAMMA-3) irradiated by 2.33 GeV deuteron beam

NUCLEAR REACTIONS 232Th, U(n, f), (n, γ), (n, 2n), E=1.E-10-1.E3 MeV; measured reaction products, Eγ, Iγ. 85mKr, 93Y, 97Zr, 99Mo, 103Ru, 105Rh, 132Te, 131,133I, 133,135Xe, 140Ba, 141,143Ce, 231Th, 233Pa, 237U, 239Np deduced reaction rates, T1/2. 232Th, U(n, 2n), E=10-2000 MeV; calculated σ using TALYS. 232Th(n, f), E=400 keV, 14, 25, 50, 100, 200 MeV; measured fission products, deduced mass distribution; calculated mass distribution at two lowest energies using TALYS. Neutron flux calculated using MCNPX with LA150 cross section library.

doi: 10.1140/epja/i2011-11085-4
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1979KN04      Aust.J.Phys. 32, 439 (1979)

V.A.Knatko, B.A.Martsynkevich, E.A.Rudak

An Analysis of the γ-Ray Decay of Weak s Resonances in 40Ca

NUCLEAR REACTIONS 40Ca(n, γ), E=thermal, resonance; analyzed capture data. 41Ca levels deduced S, B(M1), B(E2) for L=1, 3, Γγ for L=0 captures. Core-nucleon model.

doi: 10.1071/PH790439
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1976MA22      Nucl.Phys. A262, 261 (1976)

B.A.Martsynkevich, E.A.Rudak

The Role of Collective E1 γ-Transitions in (n, γ) Reactions on Nuclei With N = 28 and 82

NUCLEAR STRUCTURE 53Cr, 55Fe, 139Ba, 141Ce, 143Nd; calculated wave functions, B(E1).

doi: 10.1016/0375-9474(76)90620-5
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