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NSR database version of April 11, 2024.

Search: Author = S.Marsh

Found 12 matches.

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1985RA12      Phys.Lett. 156B, 167 (1985)

W.D.M.Rae, S.C.Allcock, S.Marsh, B.R.Fulton

High-Spin α-Cluster Resonances in 16O

NUCLEAR REACTIONS 12C(12C, 16O), E=120 MeV; measured σ(E(16O)), α(12C)-coin, σ(θα, φα). 16O levels deduced decay characteristics, J, π, Γα0/Γα1.

doi: 10.1016/0370-2693(85)91502-3
Citations: PlumX Metrics


1984BE19      Int.J.Appl.Radiat.Isotop. 35, 163 (1984)

R.J.Beckman, S.F.Marsh, R.M.Abernathey, J.E.Rein

Plutonium-240 Half Life Determined by Isotope-Dilution Mass Spectrometric Measurement of Grown-In Uranium-236

RADIOACTIVITY 240Pu(α); measured T1/2; deduced confidence limit. Isotope dilution mass spectroscopy, 236U growth.

doi: 10.1016/0020-708X(84)90227-8
Citations: PlumX Metrics


1983MA06      Phys.Lett. 121B, 238 (1983)

S.Marsh

Maximum Entropy Analysis Applied to Heavy-Ion Transfer Reactions

NUCLEAR REACTIONS 232Th(16O, X), E=105 MeV; analyzed σ(fragment, E) for X=12,13,14,15C, 12,13B, 15,16,17N; deduced model parameters. Maximum entropy method.

doi: 10.1016/0370-2693(83)90796-7
Citations: PlumX Metrics


1982MA38      Nucl.Phys. A389, 45 (1982)

S.Marsh

The Hyperspherical Harmonics Method Applied to 12C

NUCLEAR STRUCTURE 12C; calculated levels, charge density distribution. Hyperspherical harmonics methods.

NUCLEAR REACTIONS 12C(e, e), E not given; calculated form factors. Hyperspherical harmonics method.

doi: 10.1016/0375-9474(82)90289-5
Citations: PlumX Metrics


1980MA45      Int.J.Appl.Radiat.Isotop. 31, 629 (1980)

S.F.Marsh, R.M.Abernathey, R.J.Beckman, J.E.Rein

Plutonium-241 Half-Life Determined by Mass-Spectrometric Measurement of Decreasing 241Pu/242Pu Ratios

RADIOACTIVITY 241Pu; measured T1/2. Mass-spectrometry, decreasing 241Pu to 242Pu ratio.

doi: 10.1016/0020-708X(80)90021-6
Citations: PlumX Metrics


1978MA45      Int.J.Appl.Radiat.Isotop. 29, 509 (1978)

S.F.Marsh, R.M.Abernathey, R.J.Beckman, R.K.Zeigler, J.E.Rein

Plutonium-239 Half Life Determined by Isotope Dilution Mass Spectrometric Measurement of Grown-in Uranium-235

RADIOACTIVITY 239Pu; measured T1/2, 235U growth. Isotope dilution mass spectrometry. Standard deviation, 95% confidence limits quoted.

doi: 10.1016/0020-708X(78)90008-X
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1965MA69      Trans.Amer.Nucl.Soc. 8, 12 (1965)

S.F.Marsh, R.E.Foster

Chemical Separations in the Determination of Fission Yields


1963MA63      Anal.Chem. 35, 292 (1963)

W.J.Maeck, S.F.Marsh, J.E.Rein

Solvent Extraction Method for Zirconium-97. Use for Evaluating Critical Nuclear Incidents.

doi: 10.1021/ac60196a006
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1962MA62      Anal.Chem. 34, 1406 (1962)

S.F.Marsh, W.J.Maeck, G.L.Booman, J.E.Rein

Solvent Extraction Method for Radiocerium

doi: 10.1021/ac60191a017
Citations: PlumX Metrics


1962MA63      Anal.Chem. 34, 1408 (1962)

S.F.Marsh, W.J.Maeck, J.E.Rein

Determination of Radiomanganese in Fission Product-Corrosion Product Mixtures.

doi: 10.1021/ac60191a018
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1962MA65      Talanta 9, 285 (1962)

S.F.Marsh, W.J.Maeck

Improved Radiochemical Determination of COBALT

doi: 10.1016/0039-9140(62)80062-9
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1961MA49      Anal.Chem. 33, 870 (1961)

S.F.Marsh, W.J.Maeck, G.L.Booman, J.E.Rein

Improved 2-Thenoyltrifluoroacetone Extraction Method for Radiozirconium

NUCLEAR REACTIONS 235U(n, F)95Zr, E thermal; measured reaction products; deduced fissionyields.

doi: 10.1021/ac60175a017
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Data from this article have been entered in the EXFOR database. For more information, access X4 dataset13211.


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Note: The following list of authors and aliases matches the search parameter S.Marsh: , S.F.MARSH