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A. Nuclear structure and dynamics
Halo nuclei
Light nuclei
Interacting shell model
Heavy nuclei
Interacting boson model
Dynamic symmetries
Reaction theory at intermediate or large momentum transfers
Hypernuclei
Other (specify in comments)
B. Quark structure of matter
Quark and gluon distributions in hadrons
Structure of the QCD vacuum and hadrons
Lattice gauge theory
Light-front (or light-cone) approaches
Effective field theories (incl. chiral perturbation theory)
Relativistic nuclear many-body theory
Quark models
Dyson-Schwinger and Other Integral Equations
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C. Phases of nuclear matter
Gas-liquid phase transition
Hot and dense hadronic matter
Ultrarelativistic heavy-ion collisions
Quark-gluon plasma
In-medium properties of hadrons
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D. Electroweak interactions with nucleons and nuclei
Weak lepton-nucleon and lepton-nucleus scattering
Symmetry violation in nuclei and atoms
Double beta decay
Electromagnetic probes of few-body systems
Electromagnetic probes of intermediate- and heavy-mass nuclei
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E. Nuclear astrophysics
Nucleosynthesis
Solar physics
Supernovae
Neutron Stars
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F. Applications of nuclear theory
Atomic clusters
Spin systems
Molecular physics
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Feedback Form / furnstah@mps.ohio-state.edu / created: 2/28/95