Abstract

Energy levels and spectroscopic factors for the low-lying levels in $^{99}\mathrm{Mo}$ are calculated within the framework of the quasiparticle-vibration coupling approach in the unified nuclear model. The calculated results are in very good agreement with the experimental data. Nuclear moments for the ground and first excited states are also predicted.NUCLEAR STRUCTURE $^{99}\mathrm{Mo}$; calculated levels, $J$, $\ensuremath{\pi}$, and spectroscopic factors; $\ensuremath{\mu}$ and $q$ for the ground and first excited states. Compared with experiments.

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