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Regensburg 2010 – scientific programme

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DF: Fachverband Dielektrische Festkörper

DF 14: Glasses I (Joint Session of DY, DF, CPP)

Wednesday, March 24, 2010, 14:00–17:30, H48

14:00 DF 14.1 Invited Talk: New Approach to the Old Problem: Cooperativity in Dynamics of Glass Forming Systems — •Alexei Sokolov
14:30 DF 14.2 THz Signatures of the Glass Transitions in Polymers — •Marco Reuter, Steffen Wietzke, Christian Jansen, Tilmann Jung, Sangam Chatterjee, Wiebke Dempwolf, Henning Menzel, and Koch Martin
14:45 DF 14.3 The elusive nature of the Debye process in monohydroxy alcohols: A new approach with 2H-NMR techniques — •Sebastian Schildmann, Catalin Gainaru, and Roland Böhmer
15:00 DF 14.4 Relaxation Kinetics of Nanoscale Indents in a Polymer Glass — •Armin Knoll, Dorothea Wiesmann, Bernd Gotsmann, and Urs Duerig
15:15 DF 14.5 Studying the dynamics of water molecules on a complex lattice: KOH doped tetrahydrofuran clathrate hydrate — •Helge Nelson, Catalin Gainaru, Andre Nowaczyk, Sebastian Schildmann, Burkhard Geil, and Roland Böhmer
  15:30 15 min. break
15:45 DF 14.6 Invited Talk: Slow domains percolation in polymer melts and blends close to the glass transition: a unifying concept regarding bulk dynamics, dynamics in the vicinity of interfaces, and the physical properties of nanocomposites — •Didier R. Long
16:15 DF 14.7 Glass Transition of Molecules Sorbed in ZeolitesÖzlen F. Erdem, •Dieter Michel, Pavel Sedykh, and Jürgen Haase
16:30 DF 14.8 Molecular glass formers in hard and soft confinement probed by 31P and 2H NMR — •Daniel Bock, Sabine Gradmann, and Ernst Rössler
16:45 DF 14.9 Quantitative Lineshape Analysis for 1D- and 2D-Spectra of Amorphous Materials — •Jörn Schmedt auf der Günne, Sabarinathan Venkatachalam, Johannes Weber, and Yamini Avadhut
17:00 DF 14.10 Low-Frequency Excess Contribution in Simple Liquids Revealed by Fast Field Cycling NMR — •Roman Meier, Axel Herrmann, Robert Kahlau, Danuta Kruk, and Ernst Rössler
17:15 DF 14.11 Glass transition of colloidal particles with long-ranged interactions in two dimensions — •David Hajnal, Martin Oettel, and Rolf Schilling
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