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- W2297123192 abstract "The ${mathrm{Na}}^{21}$ nucleus has been studied through two reactions: the ${mathrm{Ne}}^{20}(d, n){mathrm{Na}}^{21}$ reaction using a fast neutron spectrometer, and the ${mathrm{Ne}}^{20}(p, ensuremath{gamma}){mathrm{Na}}^{21}$ reaction using both single-crystal and Hoogenboom techniques. ${overline{E}}_{d}$ for the neutron spectroscopy for the major part of the work was centered about 4.87 Mev, while the capturing resonance for the gamma-ray work was at ${overline{E}}_{p}=1.17$ Mev. Enriched neon was employed as target gas.Energy levels in ${mathrm{Na}}^{21}$ are found at excitations of 0.33ifmmodepmelsetextpmfi{}0.03 Mev, 1.77ifmmodepmelsetextpmfi{}0.05 Mev, 2.42ifmmodepmelsetextpmfi{}0.04 Mev, 2.80ifmmodepmelsetextpmfi{}0.06 Mev, and 3.61ifmmodepmelsetextpmfi{}0.06 Mev. From the neutron work level parameters can be assigned to the 0.33- and 2.42-Mev levels, while the from gamma-ray work spin limits and parity may be assigned to the 3.61-Mev level. This latter level corresponds to the 1.17-Mev capture resonance, and a study of the deexcitation cascades has been partially completed. A discussion of the level scheme of ${mathrm{Na}}^{21}$ in terms of the collective model is given." @default.
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- W2297123192 title "Energy Levels in<mml:math xmlns:mml=http://www.w3.org/1998/Math/MathML display=inline><mml:mrow><mml:msup><mml:mrow><mml:mi mathvariant=normal>Na</mml:mi></mml:mrow><mml:mrow><mml:mn>21</mml:mn></mml:mrow></mml:msup></mml:mrow></mml:math>" @default.
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- W2297123192 doi "https://doi.org/10.1103/physrev.123.939" @default.
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