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Max Planck Institute for the Study of Crime, Security and Law | Freiburg Elbe, Niedersachsen | Germany | 1 day ago
innovative approaches (e.g., virtual reality studies, smartphone applications, and potentially mobile laboratory data collection in real-world settings), the project will experimentally manipulate situational
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Description We invite applications for a fully funded PhD position within the DFG Priority Programme SPP2389. https://tu-dresden.de/mn/biologie/allgemeine_mikrobiologie/spp2389?set_language=en
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information about our institute here: https://www.fz-juelich.de/en/ias/ias-8 Your Job: Develop physics-aware simulations of growing cell populations, including their spatiotemporal manipulation in microfluidic
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Your Job: In the Vi(MA)²C project, we are building a lab-on-chip system where structured “microbial arenas” are created and manipulated in real time. Microbes and tailor-made microgels are observed
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Max Planck Institute for the Study of Crime, Security and Law, Freiburg | Freiburg im Breisgau, Baden W rttemberg | Germany | about 3 hours ago
potentially mobile laboratory data collection in real-world settings), the project will experimentally manipulate situational triggers to test whether they shift individuals’ momentary (state) STM, and in turn
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Analyze miRNA expression profiles in murine models and human samples following lifestyle interventions Perform functional manipulation of miRNAs in vitro and in vivo to assess their roles in gene regulation
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electrochemical microscopy (SECM) Extensive experience in the field of operando electrochemical cell design and scanning probe manipulation for catalytic interface analysis of hydrogen carrier (e.g. ammonia
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Gottfried Wilhelm Leibniz Universität Hannover | Hannover, Niedersachsen | Germany | about 2 months ago
for a fully funded PhD position within the DFG Priority Programme SPP2389 https://tu-dresden.de/mn/biologie/allgemeine_mikrobiologie/spp2389 . International collaboration The PhD is embedded in a close
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dynamical manipulation of quantum systems. However, the scope of the graduate school extends to various related topics in theoretical and computational chemistry and both theoretical and experimental
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are building a lab-on-chip system where structured “microbial arenas” are created and manipulated in real time. Microbes and tailor-made microgels are observed and moved by laser-based optical tweezers in a