Experimental Techniques for the Study of Dynamics in Soft Materials .- Computational Tools to Understand Inelastic and Quasielastic Neutron Scattering Data.- Basic Modes of Motion in Polymers.- Complex Polymers.- Solid Polymer Electrolytes.- Future Perspectives: Moving to Longer Length and Time Scales, from Polymers to Biological Macromolecules.- Structure and Dynamics of Biological Systems: Integration of Neutron Scattering with Computer Simulations.- Protein Dynamics and Function.- Biomolecules and Hydration Water Dynamics.- Lipid Membranes.- Application of Time-resolved SANS to Non-equilibrium Kinetic Studies.- Understanding the Stability of Micellar Systems of Interest for the Study of Glasses, Freezing and Soft Confinement.- Structure and Dynamics of Polymer Nanocomposites .- Surface and Confinement Effects in Nano/Mesoporous Materials.- Understanding Boundary Slip and Anomalies in the Structural and Dynamical Properties of Liquids Under Flow.
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