› Capture of CO2 using aqueous foam - Cécile Aprili, LIPhy
09:45-09:58 (13min)
› Swimming droplets facing gravity - Léo-Paul Barbier, Gulliver, CNRS, ESPCI Paris, PSL Research University
09:58-10:11 (13min)
› Biomimetic leaf to investigate embolism in plants - François-Xavier Gauci, Institut de Physique de Nice
10:11-10:24 (13min)
› Isolated meniscus around objects in contact with a vertical soap film - Alexandre Vigna-Brummer, Université Côte d'Azur, CNRS, Institut de Physique de Nice
10:24-10:37 (13min)
› From Buckling to Internalising: Tissue Folding Modelled with Morphoelastic Shells - Antoine Jallon, Institut de Biologie Valrose, Laboratoire Interdisciplinaire de Physique [Saint Martin d'Hères]
11:40-11:53 (13min)
› Inertial polar active fluids : Stability and Turbulence - Navdeep Rana, Max Planck Institute for Dynamics and Self-Organization
11:53-12:06 (13min)
› Harvesting microalgal suspensions - Emilie Verneuil, Sciences et Ingénierie de la Matière Molle
12:06-12:19 (13min)
› How do bacteria self-organize in drying drops? - Suriya Prakash, Dept. of Applied Physics and J.M. Burgers Center for Fluid Dynamics, TU Eindhoven, Institute for Complex Molecular Systems, TU Eindhoven
12:19-12:32 (13min)
› Detachment of a highly concentrated suspension drop - Hector Urra, Laboratoire IUSTI CNRS
16:40-16:53 (13min)
› Evaporation of Colloidal Silica Dispersions in a 2D Confined Droplet: New Insights using Combined Microscopy and Interferometry - Ole Milark, Université de Pau et des Pays de l'Adour, CNRS, LFCR, UMR 5150, 64600 Anglet, France
16:53-17:06 (13min)
› Flows of fumed silica suspensions - Widad Mesbahi, Physique et mécanique des milieux hétérogènes
17:06-17:19 (13min)
› Transition from boundary to hydrodynamic lubrication - Vincent Bertin, Institut universitaire des systèmes thermiques industriels
17:19-17:32 (13min)
› Probing the Angle of Repose of Dense Colloidal Suspensions - Jesus Fernandez, Université Claude Bernard Lyon 1
17:32-17:45 (13min)
› Contact Line Instabilities in Sliding Viscoelastic Drops - Léa Delance, Max Planck Institute for Polymer Research
17:45-17:58 (13min)