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Field
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microenvironments has advanced tremendously. State-of-the-art approaches now include microwell arrays for 3D cell culture, as well as microfluidic organs-on-chips (OoCs) and microphysiological systems (MPSs) in
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traits using industrial-scale additive manufacturing (i.e., 3D-printing) techniques. The resulting mimics should ‘kick-start’ establishment of the target habitat-modifying species, after which
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. The project is part of a larger NWO-VICI project, and as such the recruited PhD student will be expected to closely collaborate with at least 2 other PhD students and one postdoc within the project. While
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student will be expected to closely collaborate with at least 2 other PhD students and one postdoc within the project. While this PhD project will focus on sustainable membrane production, others will focus
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electrical conductivity. Implement the developed models and validate them against welding experiments. We are looking for a colleague who has experience in deriving and implementing numerical methods to solve 3D field
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adaptation and learning from their experiences. Using a combination of theory, numerical experiments and precision desktop experiments, we will create 3D materials with self-adapting elastic elements
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electrochemical transducers; 3D printing and device fabrication; Scientific Dissemination: writing articles and participating in international conferences; Contribute to the teaching activities of the department
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and electrochemical transducers; 3D printing and device fabrication; Scientific Dissemination: writing articles and participating in international conferences; Contribute to the teaching activities
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including faculty members, postdocs and PhDs working on diverse topics in the field of dynamical systems and control and its applications. This PhD position is jointly supervised by Nathan van de Wouw, Tom
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PhD candidates, postdocs, and faculty members. Our group focuses on understanding and mitigating corrosion processes, and on the development of electrocatalysts and electrochemical sensors through