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sequencing (whole genome sequencing, exome sequencing, RNA-seq, ChIP-seq, Hi-C), array CGH, droplet digital PCR, and genome editing. Postdoctoral Associate will study the genetic bases of lung development and
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this project, we will move towards phase-separating droplets with more than one component as they typically occur in physiological conditions. We will use a variety of techniques, including small-angle X-ray
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and compartmentalization. ESPCI will contribute to the in vitro compartmentalization of autocatalytic and metabolic system in emulsion droplets and coacervate droplets using microfluidic systems
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group's efforts in modeling combustion-generated aerosols. These modeling framework will be used to understand the impact of inorganic aerosols on sunlight scattering and droplet/ice crystal nucleation
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-electrolyte interphase science (SEI/CEI), and advanced high‑throughput electrochemical characterization, with strong focus on Scanning Droplet Cell (SDC) methodologies. The doctoral project will focus on Li‑ion
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confinement in micron-scale aerosol droplets. The droplets will be prepared from solutions in either water or organic solvents. The organic solutes will be chosen as examples of molecules
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. Experience linking engineering parameters (pressure, droplet size, duty cycle, travel speed) to biological efficacy and input-use efficiency. Experience leading or mentoring cross-functional teams of engineers
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(f/m/d) (65 %) initially for a duration of 36 months Project description: Metabolic dysfunction-associated steatotic liver disease (MASLD) is characterized by accumulation of lipid droplets in
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surfaces for droplet flow control and vibration-based soft robot. The project has an ambitious aim to demonstrate how physical principles from a new understanding of the coupling between viscous flow and
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hairy surfaces for droplet flow control and vibration-based soft robot. The project has an ambitious aim to demonstrate how physical principles from a new understanding of the coupling between viscous