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Regensburg 2016 – scientific programme

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CPP: Fachverband Chemische Physik und Polymerphysik

CPP 35: Activated and Glassy Dynamics of Soft Matter (joint session CPP/DY, organized by CPP)

Wednesday, March 9, 2016, 09:30–13:00, H51

09:30 CPP 35.1 On the dynamics of densely grafted polymer chains — •Michael Lang, Marco Werner, Ron Dockhorn, and Torsten Kreer
09:45 CPP 35.2 Transient Cooperative Process in Dewetting Polymer Melts — •Sivasurender Chandran and Günter Reiter
10:00 CPP 35.3 Picosecond Dynamics of Liquid Glycerol Above Tg — •Sebastian Busch, Alessandro Vispa, Nicolas Giovambattista, and Luis Carlos Pardo
10:15 CPP 35.4 Mechanically induced ageing and compaction of porous polymer membranes — •Ulrich A. Handge
10:30 CPP 35.5 Lifetime Prediction of Physical Ageing in Glassy Polymer Membranes — •Nils Müller, Ulrich Alexander Handge, and Volker Abetz
  10:45 15 min. break
11:00 CPP 35.6 Invited Talk: The extraordinary mechanical properties of spider silk and it's molecular foundation — •Friedrich Kremer, Markus Anton, Periklis Papadopoulos, Roxana Figuli, and Wilhelm Kossack
11:30 CPP 35.7 Tayloring the properties of polydiene elastomers via associating hydrogen bonding groups: A micro- and macroscopic approach — •Barbara J. Gold, Claas H. Hövelmann, Wim Pyckhout-Hintzen, Andreas Wischnewski, and Dieter Richter
11:45 CPP 35.8 Chain-level dynamics and relaxation in supramolecular self-healing networksAnton Mordvinkin and •Kay Saalwächter
12:00 CPP 35.9 A novel approach to determine the cross-linking level of epoxy resins — •Lisa Maria Uiberlacker, Moritz Strobel, and Sabine Hild
12:15 CPP 35.10 Supramolecular association in transiently branched polymer systems — •Mariapaola Staropoli, Claas Hoevelmann, Juergen Allgaier, Andreas Raba, Wim Pyckhout-Hintzen, Andreas Wischnewski, and Dieter Richter
12:30 CPP 35.11 ReaxFF+ I - a new reactive force field method for the accurate description of ionic systems — •Oliver Böhm, Stephan Pfadenhauer, Roman Leitsmann, Philipp Plänitz, and Michael Schreiber
12:45 CPP 35.12 ReaxFF+ II - highly efficient parametrization methods for the ReaxFF+ at the example of the hydrolysation of aluminosilicatesOliver Böhm, Stephan Pfadenhauer, •Roman Leitsmann, Philipp Plänitz, and Michael Schreiber
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