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bacterial growth, survival and tolerance under various stress conditions, particularly antimicrobial stress. * Performance of microbiology, bacterial genetics and molecular biology techniques. * Analysis
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characterization of materials. • Development and operation of experimental test benches under high-vacuum conditions. • Definition of test protocols, including detailed test procedures and acceptance criteria
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materials under extreme conditions of intense magnetic fields (exceeding 90 T) and very low temperatures (down to 100 mK). Scientific targets will be to investigate the properties of quantum materials (UTe2
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biomass. The postdoctoral researcher at CERMAV will: • Characterize the topochemistry of the action of these enzyme mimics on model compounds and under real-world conditions. • Develop new functional
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micro-fabrication, and will consist in thin lines operating in DC conditions. The devices will be characterized by low temperature measurements in a dilution refrigerator and as a function of temperature
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treatment and reaction conditions. The work will involve the use of state-of-the-art transmission electron microscopes, together with advanced data acquisition and analysis methodologies, to achieve high
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). Special attention will be given to ion beam-assisted ZnO growth in order to establish relationships between process conditions (energy, flux, temperature) and certain characteristics of the resulting layers