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09:30 |
DY 3.1 |
Brownian motion of a microbead coated with a temperature-responsive polymer brush layer — •David van Duinen, Dominik Pilat, Hans-Jürgen Butt, and Rüdiger Berger
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09:45 |
DY 3.2 |
Unification of Lower and Upper Critical Solution Temperature Transitions in Aqueous Protein Solutions — •Nafisa Begam, Stefano Da Vela, Fajun Zhang, and Frank Schreiber
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10:00 |
DY 3.3 |
Spontaneous symmetry breaking of charge-regulated surfaces — •Arghya Majee, Markus Bier, and Rudolf Podgornik
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10:15 |
DY 3.4 |
PFA-PEG particles: A colloidal model system for the investigation of phase diagrams of PEGylated drug carrier systems — •Marcel Werner, Judith Ruland, Nils von Seggern, Moritz Tappe, Melanie Wernet, Gabriela Schmidt, and Eckhard Bartsch
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10:30 |
DY 3.5 |
Interactions in Protein Solutions in the Vicinity of the Gas-Liquid Binodal — •Jan Hansen, Florian Platten, Jannik Nedergaard Pedersen, Jan Skov Pedersen, and Stefan U. Egelhaaf
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10:45 |
DY 3.6 |
Behavior under shear of solutions of bovine serum albumin and trivalent cations — •Stefano Da Vela, Miriam Siebenbürger, Alessio Zaccone, Fajun Zhang, Matthias Ballauff, and Frank Schreiber
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11:00 |
DY 3.7 |
The contribution has been moved to CPP 4.2.
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11:15 |
DY 3.8 |
Hauptvortrag:
Reconfigurable colloidal structures — •Daniela J. Kraft
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11:45 |
DY 3.9 |
Preparation of amphiphilic asymmetric patchy particles and their effect on emulsion properties — •Marco Rehosek, Akilavasan Jeganathan, and Frank Marlow
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12:00 |
DY 3.10 |
On effective sphere models for self-diffusion of nonspherical particles — •Felix Roosen-Runge, Jin Suk Myung, Peter Schurtenberger, and Anna Stradner
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12:15 |
DY 3.11 |
Ultrasoft colloids under pressure driven flow — •Deepika Deepika and Arash Nikoubashman
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12:30 |
DY 3.12 |
Control of physico-chemical properties of Pickering emulsions for catalysis — •Dmitrij Stehl, Tobias Pogrzeba, Lena Hohl, Yuri Lvov, Matthias Kraume, Reinhard Schomäcker, and Regine von Klitzing
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12:45 |
DY 3.13 |
Crystal-fluid surface tension in the two dimensional binary hard disk mixture, a DFT study — •Shang-Chun Lin and Martin Oettel
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