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Berlin 2008 – wissenschaftliches Programm

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CPP: Fachverband Chemische Physik und Polymerphysik

CPP 7: POSTERS Rheology

Montag, 25. Februar 2008, 16:45–19:00, Poster A

16:45 CPP 7.1 Spatio-temporal behavior of dipolar nano-rods under shear — •Sebastian Heidenreich, Siegfried Hess, and Sabine H. L. Klapp
16:45 CPP 7.2 Deviation from elongational flow in the capillary breakup of polyethylene oxide solutions — •Rainer Sattler and Christian Wagner
16:45 CPP 7.3 Uncommon rheological effects during melting of dibenzylidene sorbitol fiber networks in poly (propylene oxide) — •Martin Kühne and Christian Friedrich
16:45 CPP 7.4 Shear induced brush deformation of soft colloids: Hybrid mesoscale simulations and Rheo-SANS experiments — •Jörg Stellbrink, Marisol Ripoll, Roland G. Winkler, Gerhard Gompper, Jan K.G. Dhont, Dieter Richter, Dimitris Vlassopoulos, and Peter Lindner
16:45 CPP 7.5 Interfacial Shear Rheology of Coffee Samples — •Jörg Läuger and Patrick Heyer
16:45 CPP 7.6 Wet sand flows better than dry sand — •Jorge Fiscina and Christian Wagner
16:45 CPP 7.7 In-situ investigation of the solid/liquid interface of a block copolymer solution under shear stress with µ-focus GISAXS — •Andreas Timmann, Stephan Volkher Roth, Steffen Fischer, and Stephan Förster
16:45 CPP 7.8 Networks in polypropylene / carbon nanotube composites investigated by simultaneous rheological and electrical measurementsNikolaos Katsikis, •Christian Triebel, Joachim Kaschta, Helmut Münstedt, Andreas Funk, and Walter Kaminsky
16:45 CPP 7.9 Surface enrichment in statistical copolymer films — •Alexander Diethert, Ezzeldin Metwalli Ali, and Peter Müller-Buschbaum
16:45 CPP 7.10 Evolution of complex defects in cylinder phase of block copolymers: Experiment and Simulations — •Larisa Tsarkova, Andriana Horvat, Agur Sevink, and Andrey Zvelindovsky
16:45 CPP 7.11 Fluids in confinement: Dynamics of Foam Film ThinningSilke Stöckle, •Rumen Krastev, Georgi Georgiev, and Helmuth Möhwald
16:45 CPP 7.12 Time evolution of surface relief structures in thin block copolymer films — •Andriana Horvat, Larisa Tsarkova, Agur Sevink, Andrey Zvelindovsky, Robert Magerle, and Armin Knoll
16:45 CPP 7.13 Depth profilling of lamella-forming block copolymer films using SFM with quasi in-situ etching treatmentEva Max, Markus Hund, and •Larisa Tsarkova
16:45 CPP 7.14 Structure and dynamics within the length scale of the boundary layer — •Marco Walz, Nicole Voss, Max Wolff, Hartmut Zabel, and Andreas Magerl
16:45 CPP 7.15 Unusual growth exponent in liquid crystal foams — •Torsten Trittel, Victor Aksenov, and Ralf Stannarius
16:45 CPP 7.16 Kinetic toy model for crystal plasticity — •Markus Hütter, Miroslav Grmela, and Hans Christian Öttinger
16:45 CPP 7.17 Single molecule probe diffusion in liquid crystalline films — •Benjamin Schulz, Jörg Schuster, and Christian von Borczyskowski
16:45 CPP 7.18 Rupture dynamics of smectic bubbles — •Frank Müller and Ralf Stannarius
16:45 CPP 7.19 Influences of Added Salt on the Drying Behavior of Polymer Dispersions - Simultaneous Use of Magnetic Resonance Profiling and Diffusing-Wave Spectroscopy — •Alexander König, Peter McDonald, Joseph Keddie, and Diethelm Johannsmann
16:45 CPP 7.20 Competition of Phase Separation and Kinetic Arrest in a Binary Mixture with Depletion Attraction — •Anna Kozina, Pedro Diaz-Leyva, Christian Friedrich, and Eckhard Bartsch
16:45 CPP 7.21 Network induced relaxation dynamics in colloidal gels. — •Emanuela Del Gado
16:45 CPP 7.22 Ordnungsverhalten eines A-B Diblockcopolymers in einer (A/B/A-B) Polymermischung aus drei Komponenten — •Vitaliy Pipich, Lutz Willner und Dietmar Schwahn
16:45 CPP 7.23 Fluorescence correlation sprectroscopy for micro-rheological measurements — •Hubert Chevreau, Hans-Josef Beauvisage, and Silke Rathgeber
16:45 CPP 7.24 Supercooled Water Confined in Reverse Micelles - A Neutron Scattering Study — •Tinka Spehr, Bernhard Frick, Isabelle Grillo, and Bernd Stühn
16:45 CPP 7.25 Statistics and dynamics of blends of linear and ring polymers. — •Michael Lang and Michael Rubinstein
16:45 CPP 7.26 Micellar crystallization in salted solutions — •Nicole Voss, Marco Walz, Max Wolff, Hartmut Zabel, and Andreas Magerl
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