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- W2057541463 abstract "The mixing ratios for two gamma-ray transitions in ${mathrm{C}}^{13}$ have been measured: For the transition $3.68ensuremath{rightarrow}0$, $x(frac{E2}{M1})=ensuremath{-}({{0.096}_{ensuremath{-}0.021}}^{+0.030})$ while for the transition $3.85ensuremath{rightarrow}0$, $x(frac{E3}{M2})=+(0.12ifmmodepmelsetextpmfi{}0.03)$. The phase convention quoted by Poletti and Warburton is used. The phase of the mixing ratio for the 3.68 ensuremath{rightarrow} 0 transition is compared with that for the mirror transition in ${mathrm{N}}^{13}$ and with the phase of the mixing ratio for the transitions between ${frac{3}{2}}^{ensuremath{-}}$ and ${mathrm{textonehalf{}}}^{ensuremath{-}}$ hole states in ${mathrm{N}}^{15}$ and ${mathrm{O}}^{15}$. The 3.85 ensuremath{rightarrow} 0, ${frac{5}{2}}^{+}$ ensuremath{rightarrow} ${mathrm{textonehalf{}}}^{ensuremath{-}}$ transition is also discussed and compared with the ${frac{5}{2}}^{+}$ ensuremath{rightarrow} ${mathrm{textonehalf{}}}^{ensuremath{-}}$ transitions in mass 15." @default.
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- W2057541463 date "1966-11-18" @default.
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- W2057541463 title "Mixing Ratios in the Ground-State Decays of the 3.68- and 3.85-MeV Levels ofC13" @default.
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- W2057541463 doi "https://doi.org/10.1103/physrev.151.812" @default.
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