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We are seeking a motivated PhD student to use single-molecule techniques and computational tools to explore molecular interactions and apply them for therapeutic applications. Job description We
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design strategies. You will develop methodologies to design, make, screen, and test de novo proteins for incorporation in a particle-based continuous sensing platform with single-molecule resolution
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. You will develop methodologies to design, make, screen, and test de novo proteins for incorporation in a particle-based continuous sensing platform with single-molecule resolution, called Biosensing by
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of carbon cycling. It incorporates pesticide mixture toxicity, which is severely understudied, especially to viruses, bacteria, archaea, and fungi. As such, it goes beyond the effects of single chemicals
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secondary structures, such as virus-like particles and plasmids. In your PhD project, you will study nanoswitches in a particle-based sensing platform with single-molecule resolution, called Biosensing by
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scales, i.e. from molecules and microorganisms to patterns and processes occurring at the global scale. The University of Amsterdam has excellent high performance computing facilities. Furthermore, IBED
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those. The IBED vision includes research encompassing experimental and theoretical approaches at a wide variety of temporal and spatial scales, i.e. from molecules and microorganisms to patterns and
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superconductivity, while a single layer of graphene does not. These materials also show unusual behaviour in high magnetic fields, such as the emergence of quasiparticles that behave as if they experience zero
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cutting-edge SERS microspectroscopy sensors to detect and characterize fungal secondary metabolites at single-cell scale? This PhD might be for you! Soil fungi are key drivers of global carbon and nutrient
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to characterize this phenomenon at single-cell resolution using whole-genome sequencing and artificial intelligence (AI)? If so, this PhD position could be an excellent fit for you! In this ZonMw-funded project