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inorganic syntheses Develop and optimize electrochemical experiments and measurements Characterize materials and compounds using standard analytical techniques Analyse data and document results Collaborate
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microbiological and analytical techniques including isolation of quorum-sensing-bacteria, design of RNA FISH probes, high-throughput testing on microbial cultures, analytical tools such as confocal microscopy, flow
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have background in oxidative enzymes, advanced analytical methodologies and insights into the chemistry of electrochemically active compounds. As a formal qualification, you must hold a PhD degree (or
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quantum networks, where one bit of information is encoded in the quantum state of a single photon. You will be part of a team of 10-12 people between senior staff, PostDocs and PhD/Master students
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to deploy and scale, by running plug-and-play analytics inside modern drives or on a plant controller using only electrical signals already measured by the drive, while minimizing data export and supporting
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to groundwater and environmental systems Developing and applying imaging and analytical methods for studying transport and adsorption processes at the pore scale Designing and conducting controlled laboratory
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materials, (d) Artificial Intelligence (AI) models to predict and control the construction process, (e) a digital twin / information backbone that enables cohesive operation of the design and production
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Determine T cell phenotype and transcriptomic characteristics Integrate T cell data with other adaptive immune parameters. Making high quality peptide-MHC reagents to explore T cell recognition How can we
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with electrochemistry and material science. Have strong analytical skills and experience with data analysis software. Proficiency in electrochemical techniques, such as voltammetry, amperometry, and