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Department of Electrical and Computer Engineering is seeking a highly motivated and skilled Postdoctoral Researcher to join the lab led by Professor Fatima Toor (https://ftoor.lab.uiowa.edu/). This position
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Predoctoral researcher at the Targeted Therapeutics & Nanodevices Research Group (Project BRAINZYME)
physiological conditions. • Examine their performance in 2D and 3D systems, including chemical and genetic disease models, multi-cultures and organ-on-a-chip devices. • Investigate the biodistribution as
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of lab-on-a-chip and microfluidic devices. • Development and implementation of a microfluidic platforms to study cell-to-cell and organoid-to-organoid cross-talk. • Implementation of quantitative and
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disease mechanisms and gain new insights into pathophysiology. Designing and applying advanced bioengineering tools, such as lab-on-a-chip and microfluidic devices, to study neuronal networks and model
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Zentrum München (HMGU), Germany, is the ideal environment for you! In flow probing of absorption profiles of medically relevant cell types is a critical diagnostic asset. The Cell Engineering lab
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. Change. Impact! Faculty Mechanical Engineering From chip to ship. From machine to human being. From idea to solution. Driven by a deep-rooted desire to understand our environment and discover its
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such as data analysis, monitoring outcomes, performing lab maintenance, and/or performing experiments and creating creative projects. May assist in short- and long-term planning and project goals. May
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global scale. That is why we invite you to apply. Your application will receive fair consideration. Challenge. Change. Impact! Faculty Mechanical Engineering From chip to ship. From machine to human being
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HPC systems. IVRs either in package or on-chip, provide voltage regulation closer to the load, enabling miniaturization and modularity while reducing resistive losses due to shorter PDN interconnects
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and performance in HPC systems. IVRs either in package or on-chip, provide voltage regulation closer to the load, enabling miniaturization and modularity while reducing resistive losses due to shorter