Abstract

Part 1 Opening lecture: bound states of massless objects - source of new physics, V.N. Gribov. Part 2 Theory and phenomenology: classical versus quantum vacua - from mechanics to superstrings, G. Veneziano inflationary vacuum, M.S. Turner false vacuum decay, M. Voloshin properties of the vacuum in string theory, D.V. Nanopoulos QCD vacuum and experiments - masses, lifetimes, magnetic moments of hadrons including glueballs, M.A. Shifman exact nonperturbative results in supersymmetric Yang-Mills theories and string theories, S. Ferrara renormalons and phenomenological consequences, G. Altarelli signals of flavour physics in supersymmetric unification, R. Barbieri. Part 3 Physics results - status and perspectives: status of the standard model, J. Ellis LEP, H.B. Newman HERA, G. Wolf FERMILAB, J. Peoples neutron electric dipole, strong CP problem and axioms, N.F. Ramsey leading physics at LHC including machine studies plus detector R&D (LAA), A. Zichichi.

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