NSR Query Results
Output year order : Descending NSR database version of May 10, 2024. Search: Author = V.Levkovsky Found 23 matches. 1990LE27 At.Energ. 69, 99 (1990); Sov.At.Energy 69, 661 (1991) V.N.Levkovsky, V.F.Reutov, K.V.Botvin Formation of Hydrogen in Zirconium, Niobium, and Molybdenum During Irradiation with Alpha Particles in the Energy Interval from 10 to 46 MeV NUCLEAR REACTIONS, ICPND 92,94,95Mo(α, pX), (α, xnyp), E ≈ 10-50 MeV; 92,94,96Zr(α, pX), (α, np), (α, 2np), E ≈ 10-30 MeV; measured σ(E); deduced reaction σ(E), hydrogen formation σ(E). Data from this article have been entered in the EXFOR database. For more information, access X4 datasetA0510. 1990LE28 At.Energ. 69, 180 (1990); Sov.At.Energy 69, 773 (1991) V.N.Levkovsky, V.F.Reutov, K.V.Botvin Formation of Helium in Molybdenum, Zirconium, Niobium, Nickel, Iron, and Chromium Under Irradiation with 8-30-MeV Protons NUCLEAR REACTIONS, ICPND 90,91,92Zr, 93Nb, 92,94,98,100Mo(p, αX), (p, α), (p, xnypzα), E ≈ 15-30 MeV; measured σ(E); deduced helium formation σ(E). Data from this article have been entered in the EXFOR database. For more information, access X4 datasetA0510. 1984LE02 Radiat.Eff. 80, 223 (1984) V.N.Levkovsky, V.F.Reutov, K.V.Botvin Helium Accumulation in Molybdenum Irradiated by Protons in the 15-30 MeV Energy Region NUCLEAR REACTIONS, ICPND 92,98,100Mo(p, α), 92Mo(p, pα), 100,92,94Mo(p, nα), 92Mo(p, 3He), (p, n2p), 100Mo(p, 2nα), E=15-30 MeV; measured σ(E); deduced optimum incident energy for atom displacement formation, helium accumulation simulation in Mo. Data from this article have been entered in the EXFOR database. For more information, access X4 datasetA0510. 1980AR18 At.Energ. 49, 195 (1980); Sov.At.Energy 49, 655 (1981) O.I.Artemev, I.V.Kazachevskii, V.N.Levkovskii, V.L.Poznyak, V.F.Reutov Cross Sections for (n, p) and (n, α) Reactions on Chromium, Iron, Copper, and Molybdenum Nuclei at a Neutron Energy of 14.8 MeV NUCLEAR REACTIONS 52,53,54Cr, 54Fe, 92,95,96,97,98Mo(n, p), 54Fe, 63,65Cu, 92,98,100Mo(n, α), E=14.8 MeV; measured σ. Enriched targets. Data from this article have been entered in the EXFOR database. For more information, access X4 dataset41321. 1973LE31 Yad.Fiz. 18, 705 (1973); Sov.J.Nucl.Phys. 18, 361 (1974) Cross Sections of (n, p) and (n, α) Reactions at a Neutron Energy 14-15 MeV COMPILATION A=42-89; compiled cross sections for (n, p), (n, α)reactions at E=14-15 MeV.
1971KI15 Yad.Fiz. 14, 249 (1971); Sov.J.Nucl.Phys. 14, 139 (1972) B.G.Kiselev, V.N.Levkovskii, O.I.Artemev Decay of Long-Lived Isomers of Sb128 and Sb130 RADIOACTIVITY 128mSb, 130mSb; measured Eγ, Iγ, Eβ, T1/2; deduced Q. 128,130Te deduced levels. Ge(Li) detector.
1971KI22 Izv.Akad.Nauk SSSR, Ser.Fiz. 35, 2300 (1971); Bull.Acad.Sci.USSR, Phys.Ser. 35, 2088 (1972) V.G.Kiselev, V.N.Levkovskii, O.I.Artemev, L.K.Peker Decay of 126,128,130Sb and the High-Spin Quasiparticle Levels of 126,128,130Te RADIOACTIVITY 126,128,130Sb[from 126,128,130Te(n, p)]; measured Eγ, Iγ. 126,128,130Te deduced levels, J, π, configurations.
1971LE16 Yad.Fiz. 13, 923 (1971); Sov.J.Nucl.Phys. 13, 529 (1971) Cross Sections of Reactions (n, p) and (n, α) at the Neutron Energy of 14.8 MeV NUCLEAR REACTIONS Pd, Sb, Te(n, p), (n, α), E=14.8 MeV; measured σ. Activation method, enriched isotopic targets. Data from this article have been entered in the EXFOR database. For more information, access X4 dataset40029. 1970LE05 Yad.Fiz. 11, 483 (1970); Sov.J.Nucl.Phys. 11, 271 (1970) V.N.Levkovskii, I.V.Kazachevskii Decay of K44 and Sc44 RADIOACTIVITY 44K, 44Sc measured Eγ, Iγ, γγ-coin. 44Ca deduced trnsitions.
1969KI01 Program and Theses, Proc.19th Ann.Conf.Nucl.Spectroscopy and Struct.of At.Nuclei, Erevan, p.42 (1969) On the Decay of 61Co and 63Co RADIOACTIVITY 61Co; measured Eγ, Iγ. 63Co; measured T1/2, Eβ, Eγ.
1969KI09 Yad.Fiz. 9, 1113 (1969); Sov.J.Nucl.Phys. 9, 651 (1969) Decay of Co61 and Co63 RADIOACTIVITY 61Co [from 62Ni(n, p)]; measured T1/2, Eγ, Iγ. 63Co[from 64Ni(n, np)]; measured Eγ, Iγ, Eβ, T1/2.
1969LE16 Yadern.Fiz. 10, 44 (1969); Soviet J.Nucl.Phys. 10, 25 (1970) V.N.Levkovskii, G.P.Vinitskaya, G.E.Kovelskaya, V.M.Stepanov Cross Sections for (n, p) and (n, α) Reactions with 14.8-MeV Neutrons NUCLEAR REACTIONS 46,47,48,49,50Ti, 51V, 58,60,62,61Ni, 90,91,92,94Zr, 109Ag, 115In, 127I(n, p), E=14.8 MeV; 48,50Ti, 51V, 94,96Zr, 93Nb, 115In, 118Sn, 127I(n, α), E=14.7 MeV; measured σ. Activation method. Data from this article have been entered in the EXFOR database. For more information, access X4 dataset40226. 1969SH11 Izv.Akad.Nauk SSSR, Ser.Fiz. 33, 38 (1969); Bull.Acad.Sci.USSR, Phys.Ser. 33, 36 (1970) V.A.Shilin, V.R.Burmistrov, V.N.Levkovskii Gamma Radiation of 111Sn RADIOACTIVITY 111Sn, 111mIn[from 112Sn(n, 2n), 110Cd(α, 3n)]; measured T1/2, Eγ, Iγ. 111In deduced levels. Ge(Li) detector.
1968KA21 Izv.Akad.Nauk SSSR, Ser.Fiz. 32, 235 (1968); Bull.Acad.Sci.USSR, Phys.Ser. 32, 213 (1969) I.V.Kazachevskii, V.N.Levkovskii Gamma Spectrum of 61Co RADIOACTIVITY 61Co [from 61Ni(n, p)]; measured T1/2, Eβ, Eγ, Iγ, γγ-coin. 61Ni deduced levels. Enriched target.
1968KA22 Izv.Akad.Nauk SSSR, Ser.Fiz. 32, 322 (1968); Bull.Acad.Sci.USSR, Phys.Ser. 32, 295 (1969) I.V.Kazachevskii, V.N.Levkovskii Beta and Gamma Radiations Accompanying the Decay of 61Fe RADIOACTIVITY 61Fe [from 64Ni(n, α)]; measured T1/2, Eβ, Eγ, Iγ, γγ-coin; deduced γ/β. 61Co deduced levels.
1968KI08 Yadern.Fiz.8, 1063 (1968); Soviet J.Nucl.Phys. 8, 617 (1969) B.G.Kiselev, V.N.Levkovskii, I.V.Kazachevskii Decay of Co62 Isomers RADIOACTIVITY 62Co [from 62Ni (n, p), 65Cu (n, α)]; measured Eγ, Iγ, Eβ. Deduced log ft, Q. 62Co levels deduced J, π. 62Ni deduced transitions. Ge(Li) detector.
1968LE25 Yad.Fiz. 8, 7 (1968); Sov.J.Nucl.Phys. 8, 4 (1969) V.Levkovsky, G.E.Kovelskaya, G.P.Vinitskaya, V.M.Stepanov, V.V.Sokolsky Cross Sections of the (n, p) and (n, α) Reactions at 14.8 MeV NUCLEAR REACTIONS 41K, 45Sc, 59Co, 62,64Ni, 85Rb, 87Rb, 89Y, 133Cs, 142Ce(n, α), 41K, 42,44Ca, 45Sc, 59Co, 56Fe, 32S, 86,88Sr, 89Y, 136,138Ba, 139La(n, p), E = 14.8 MeV; measured β-activity of neutron activation products; deduced T1/2. Data from this article have been entered in the EXFOR database. For more information, access X4 dataset40223. 1967VI08 Yad.Fiz. 5, 1175 (1967); Sov.J.Nucl.Phys. 5, 839 (1967) G.P.Vinitskaya, V.N.Levkovsky, V.V.Sokolsky, I.V.Kazachevsky Cross Sections for (n, p) and (n, α) Reactions in Isotopes of Copper, Zinc, Gallium, and Germanium at a Neutron Energy of 14.8 MeV NUCLEAR REACTIONS 65Cu, 64,66,67Zn, 69,71Ga, 70,72,73,74Ge(n, p), 69Ga, 74Ge(n, α), E=14.8 MeV; measured residuals absolute production σ. Activation technique. Data from this article have been entered in the EXFOR database. For more information, access X4 dataset40009. 1967VI09 Yad.Fiz. 6, 240 (1967); Soviet J. of Nucl.Phys. 6, 174 (1967) G.P.Vinitskaya, V.N.Levkovskii, V.V.Sokolskii Cross-sections of the (n, p) and (n, α) reactions at neutron energy 14.8 MeV NUCLEAR REACTIONS 65Cu(n, 2n), 65Cu, 64,66,67Zn(n, p), 68Zn, 69Ga(n, α), 69Ga, 71Ga, 70Ge(n, p), 72Ge(n, α), 72,73Ge(n, p), 74Ge(n, α), 74Ge(n, p), 75As(n, α), 75As(n, p), 74Se(n, p), 76Se(n, p), 77Se(n, p), 78Se(n, α), 78Se(n, p), 80Se(n, α), 79Br(n, α), 81Br(n, α), 81Br(n, p), E=14.8 MeV; measured products, Eπ, Iπ; deduced σ, σ(E). Data were imported from EXFOR entry 40009. Data from this article have been entered in the EXFOR database. For more information, access X4 dataset40009. 1966LE19 Yad.Fiz. 4, 1258 (1966); Sov.J.Nucl.Phys. 4, 904 (1967) V.N.Levkovskii, I.V.Kazachevskii, V.V.Sokolskii, G.P.Vinitskaya The Iron Isotope Fe61 NUCLEAR STRUCTURE 61Fe, 63Co, 64Co; measured not abstracted; deduced nuclear properties.
1958LE26 Atomnaya Energ. 4, 79 (1958); Soviet J.At.Energy 4, 97 (1958) The (n, p) Reaction in Gallium and Germanium and the (n, α) Reaction in Germanium at Neutron Energies of 14 MeV
1957DZ14 Doklady Akad.Nauk.SSSR 113, 537 (1957); Soviet Phys.Doklady 2, 135 (1957) B.G.Dzantiev, V.N.Levkovskii, A.D.Malievskii (n, α) Reactions of 14-MeV Neutrons with Cadmium Data from this article have been entered in the EXFOR database. For more information, access X4 dataset40710. 1957DZ15 Doklady Akad.Nauk SSSR 113, 773 (1957); Soviet Phys.Doklady 2, 154 (1958) B.G.Dzantiev, V.N.Levkovskii, A.D.Malievskii, M.V.Serdobov Isomer Pd111
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