Mermaid Cereal now available open-access @NatureComms! 🧜♀️🥣
https://t.co/U14vWbMqCf
We realize a macroscopic 2D SALR system that can be used to probe the fundamentals of equilibrium self-assembly in an accessible tabletop platform.
PhD position - University of Calabria, Italy (DL July18, start Nov.1st)
Students interested in wave-driven particles or quantum analogs (experimental and/or theoretical) can contact me to know on-going research on these topics. #Physics#PhD https://t.co/XloN22FKJs
Video entry to the Gallery of Soft Matter 2024 of APS. Great work by the Harris lab @FluidDanamics@BrownUniversity.
V006 Sync or Swim https://t.co/kiI9WXU5HT via @YouTube
Leading off at #APSDFD we have Navid @hooshanginejad presenting on pattern formation in a magnetocapillary system. 🧜♀️🥣
A39.2 (8:13am): https://t.co/ISvlSwieRP
This is complemented by a first theoretical treatment on their wave-mediated interactions led by our close collaborator Anand Oza @NJIT.
https://t.co/mCoxRYZg5Q
Surf's up! 🏄 After being lost at "sea" for several years, our work describing the discovery of the Capillary Surfer system has now made it to shore @PhysRevFluids.
https://t.co/E1YqhM9lAt
Work led by former #harrislab@brownengin postdoc @gpucci_physics and undergrad @H312Ian.
@WAMcWatters Hello Prof. McWatters, I am happy that you are trying to reproduce these experiments. Please have a look at this article and references therein, you should find all information you need. https://t.co/8nU7W4HAqU
Introducing the SurferBot! The SurferBot is a simple vibrobot that propels along a fluid interface via asymmetric generation of capillary waves. @brownengin@BrownUResearch@fyfluiddynamics @stuartthomson90
https://t.co/05cv28ySzE
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