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Spectroscopic study of
97
Mo,
99
Mo and
101
Mo
V. Kumar
*
, R. Chapman
*
, J. Ollier
, R. Orlandi
,
J. F. Smith
, K.-M. Spohr
, D. A. Torres
, P. Wady
, S. K. Tandel
, A. Shukla
, S. J. Freeman
, G. de Angelis
, J. J. Valiente-Dobón
, S. Aydin
, E. Farnea
, R. Mărginean
, D. Mengoni
, T. Kröll
*
Corresponding author for this work
School of Computing, Engineering and Physical Sciences
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97
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99
Mo and
101
Mo'. Together they form a unique fingerprint.
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Keyphrases
Negative Parity
100%
Spectroscopic Studies
100%
Excited States
66%
Ge Detector
66%
Fission-fusion
66%
Shell Model Calculations
33%
Neutron
33%
Rotor
33%
Variable Inertia
33%
Yrast States
33%
CLARA
33%
Magnetic Spectrometer
33%
PRISMA
33%
Model-dependent
33%
Thick Target
33%
Multinucleon Transfer Reactions
33%
Level Structure
33%
Fission Products
33%
High-spin States
33%
Energy Spectrum
33%
Nuclear Shape
33%
DU-176b
33%
Shape Change
33%
Molybdenum Isotopes
33%
Transfer Test
33%
Dependent Evidence
33%
Physics
Excitation
100%
Moment of Inertia
50%
Energy Spectra
50%
Molybdenum Isotopes
50%
Magnetism
50%
Spectrometer
50%