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Titlebook: Hadron Spectroscopy and the Confinement Problem; D. V. Bugg Book 1996 Plenum Press, New York 1996 Baryon.Confinement.Meson.Quark.Strangene

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Light Mesons with Open and Hidden Strangeness, spectroscopy of light mesons is a challenge: the glueballs predicted on the basis of Quantum Chromodynamics are expected amidst the light mesons. However, identifying light mesons and determining their quantum numbers is particularly difficult due to their extremely short lifetimes. The strangeness
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Theoretical Aspects of Light Meson Spectroscopy,summary of the known and surmised properties of QCD and confinement. Following this we review the nonrelativistic quark potential model for .q̄ mesons and discuss the quarkonium spectrum and methods for identifying .q̄ states. Finally we review theoretical expectations for non-.q̄ states (glueballs,
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Heavy Flavour Spectroscopy,with heavy flavour. Surely there are simply not enough such hadrons to warrant a full four hours! A glance at figures 1 and 2, however, should reassure any doubters. Figure 1a) shows the measured mass spectrum of all of the known charmed mesons, while part b) shows the same for of all of the known c
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A Comparison with Experimental Results and Outstanding Issues in Baryon Physics,uark model calculation of these quantities. This is also carried out for pion photoproduction, and for formation and production of strange baryons. This comparison is used to focus on the outstanding issues in baryon spectroscopy, with an eye towards how the new generation of experimental facilities
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Baryon Physics at CEBAF,sics of nucleons and electromagnetically produced excited baryons. The latter will be studied mainly in Hall B with the photon tagger and CLAS detector, which are also briefly described. Experiments to look at final states involving strange quarks and to study Compton scattering from nucleons are ex
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Greenhouse Gases and Mass Extinctions,uark model calculation of these quantities. This is also carried out for pion photoproduction, and for formation and production of strange baryons. This comparison is used to focus on the outstanding issues in baryon spectroscopy, with an eye towards how the new generation of experimental facilities can best address them.
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