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. In the subconfluent regime, we recently observed in vitro a new mode of collective migration driven by asymmetric micro-rails (ratchets) whose period is smaller than a cell size. The project will study
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control algorithms that create value for multiple stakeholders, including EV users, aggregators, grid operators, and energy markets. – Develop advanced co-simulation platforms coupling distribution network
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. More information can be found on this website: http://nanobio.tamu.edu Responsibilities: Perform research in microfluidics, lab-on-a-chip, and organ-on-a-chip systems in the NanoBio Systems Laboratory
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