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NSR database version of April 27, 2024.

Search: Author = S.Basunia

Found 7 matches.

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2022SM03      Nucl.Data Sheets 186, 1 (2022)

M.Smith, C.Nesaraja, B.Singh, S.Basunia, L.Bernstein, R.Firestone, J.Tuli

Murray J. Martin (1935-2022)

doi: 10.1016/j.nds.2022.11.001
Citations: PlumX Metrics


2022TU05      Nucl.Data Sheets 185, 1 (2022)

J.Tuli, S.Basunia, B.Singh

Edgardo (Eddie) Browne-Moreno (1939-2022)

doi: 10.1016/j.nds.2022.10.003
Citations: PlumX Metrics


2018BA41      Nucl.Data Sheets 153, 1 (2018)

C.M.Baglin, E.A.McCutchan, S.Basunia, E.Browne

Nuclear Data Sheets for A=170

COMPILATION 170Gd, 170Tb, 170Dy, 170Ho, 170Er, 170Tm, 170Yb, 170Lu, 170Hf, 170Ta, 170W, 170Re, 170Os, 170Ir, 170Pt, 170Au; compiled, evaluated nuclear structure data.

doi: 10.1016/j.nds.2018.11.001
Citations: PlumX Metrics

This article is in the ENSDF database. For more information, click here.


2011GI03      Nucl.Instrum.Methods Phys.Res. A648, 109 (2011)

J.Gibelin, M.Wiedeking, L.Phair, P.Fallon, S.Basunia, L.A.Bernstein, J.T.Burke, D.L.Bleuel, R.M.Clark, M.Cromaz, M.-A.Deleplanque, B.F.Goldblum, S.Gros, H.B.Jeppesen, P.T.Lake, I.-Y.Lee, S.R.Lesher, A.O.Macchiavelli, M.A.McMahan, J.Pavan, E.Rodriguez-Vieitez, N.D.Scielzo, L.G.Moretto

Channel selection of neutron-rich nuclei following fusion-evaporation reactions of light systems

NUCLEAR REACTIONS 9Be(9Be, X)15N/16N/12C/13C/15C/16C, E=30, 35, 40 MeV;12C(18O, X)27Mg/28Mg, E=50, 60 MeV; 11B, 12C(18O, X)26Mg/27Mg/25Mg/24Na, E not given; measured reaction products, Eγ, Iγ; deduced production yields. Comparison with PACE, LisFus and GEMINI calculations.

doi: 10.1016/j.nima.2011.05.041
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2011SL01      J.Korean Phys.Soc. 59, 1473s (2011)

B.W.Sleaford, N.Summers, J.Escher, R.B.Firestone, S.Basunia, A.Hurst, M.Krticka, G.Molnar, T.Belgya, Zs.Revay, H.D.Choi

Capture Gamma-ray Libraries for Nuclear Applications

COMPILATION 1,2H, 6,7Li, 9Be, 10,11B, 12C, 14N, 16O, 19F, 23Na, 24Mg, 27Al, 28Si, 31P, 32S, 35,37Cl, 56Fe, 104Pd, 182,183,184,186W, 207Pb(n, γ), E=thermal; compiled, evaluated σ, σ(Eγ), γ decay schemes, levels, J, π using ENDF, DICEBOX. 105Pd(n, γ), E=thermal; calculated, evaluated σ(Eγ), γ decay schemes, level population. Created new library EGAF (Evaluated Gamma-ray Activation File).

doi: 10.3938/jkps.59.1473
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1998MO15      Radiochim.Acta 80, 189 (1998)

N.I.Molla, S.Basunia, M.R.Miah, S.M.Hossain, M.M.Rahman, S.Spellerberg, S.M.Qaim

Radiochemical Study of 45Sc(n, p)45Ca and 89Y(n, p)89Sr Reactions in the Neutron Energy Range of 13.9 to 14.7 MeV

NUCLEAR REACTIONS 45Sc(n, p), (n, α), E=13.9-14.7 MeV; 89Y(n, p), (n, 2n), E=14.0-14.7 MeV; measured σ. Comparison with statistical model. Activation technique.

Data from this article have been entered in the EXFOR database. For more information, access X4 dataset31494.


1994MO54      Proc.Intern.Conf.Nuclear Data for Science and Technology, Gatlinburg, Tennesse, 9-13 May, 1994, J.K.Dickens, Ed., American Nuclear Society, Vol.2, p.938 (1994)

N.I.Molla, R.U.Miah, S.Basunia, S.M.Hossain, M.Rahman

Cross sections of (n, p), (n, α) and (n, 2n) processes on scandium, vanadium, cobalt, copper and zinc isotope in the energy range 13.57 - 14.71 MeV

NUCLEAR REACTIONS 45Sc(n, 2n), 51V(n, α), 59Co(n, 2n), 59Co(n, α), 59Co(n, p), 65Cu(n, 2n), 65Cu(n, α), 65Cu(n, p), 64Zn(n, p), 68Zn(n, α), 70Zn(n, 2n), E=13.5-14.7 MeV; measured products, 44Sc, Eν, Iν; deduced σ, σ(E). Data were imported from EXFOR entry 31449.

Data from this article have been entered in the EXFOR database. For more information, access X4 dataset31449.


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