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                demonstrating how an existing anti-biofilm compound binds to and activates its specific target in Pseudomonas aeruginosa, we will design, develop and test novel anti-biofilm compounds with broader activity 
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                The candidate should have a PhD degree in Microbiology, Biotechnology, Biomedical Engineering, Materials Science, or a related discipline, with expertise relevant to antimicrobial materials and invitro testing 
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                have a PhD degree in Microbiology, Biotechnology, Biomedical Engineering, Materials Science, or a related discipline, with expertise relevant to antimicrobial materials and invitro testing. Key 
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                these topics, working at the interface of advanced experimental testing, hydrogen analytics, materials characterisation, and modelling. Please explicitly state your interest as well as previous experience 
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                will work on projects related to the future of sustainable asphalt pavements, including conceptualizing, designing, producing laboratory mixtures, testing, and supporting the implementation of innovative 
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                characterization and large-scale component testing, including the setup and use of conventional and advanced sensing technologies (e.g., displacement/strain sensors, DIC, fiber-optic sensing). Analyze experimental 
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                integration of novel methods for replacing animal testing. The project involves collaborations with several leading European research groups and experts in the field. The Postdoctoral researcher will perform 
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                testing of the bioaerosol detection instrument, with a focus on influenza viruses. Integrate modules for bioaerosol collection, biological detection, and flow cytometry measurement. Conduct laboratory and 
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                activates its specific target in Pseudomonas aeruginosa, we will design, develop and test novel anti-biofilm compounds with broader activity against the WHO priority pathogens Escherichia coli, Klebsiella 
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                characterization and large-scale component testing, including the setup and use of conventional and advanced sensing technologies (e.g., displacement/strain sensors, DIC, fiber-optic sensing). Analyze experimental