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Não Ficção QC176.SPR FCT 82664 (Browse shelf) 1 Available
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QC175.SPR FCT 94830 Slow rarefied flows QC175.16.SPR FCT 81556 Phase transition dynamics QC175.16.SPR FCT 82207 Hydrodynamic limits of the Boltzmann equation QC176.SPR FCT 82664 Application of integrable systems to phase transitions QC176.8.SPR FCT 81425 The Sherrington-Kirkpatrick model QC176.8.SPR FCT 82447 Mean field models for spin glasses QC176.8.SPR FCT 82536 Mean field models for spin glasses

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The eigenvalue densities in various matrix models in quantum chromodynamics (QCD) are ultimately unified in this book by a unified model derived from the integrable systems. Many new density models and free energy functions are consequently solved and presented. The phase transition models including critical phenomena with fractional power-law for the discontinuities of the free energies in the matrix models are systematically classified by means of a clear and rigorous mathematical demonstration. The methods here will stimulate new research directions such as the important Seiberg-Witten differential in Seiberg-Witten theory for solving the mass gap problem in quantum Yang-Mills theory. The formulations and results will benefit researchers and students in the fields of phase transitions, integrable systems, matrix models and Seiberg-Witten theory.

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