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cells shape the collective function of bacterial pathogen cell populations during colonization and infection, ii) how previously undercharacterized hydrolytic enzymes and dynamic changes in chemical
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diagnose bacterial infections. In particular, we are interested in understanding: i) how single cells shape the collective function of bacterial pathogen cell populations during colonization and infection
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techniques—including super resolution optical imaging as well as electron microscopy will be central methods, together with cell and molecular biology techniques.The candidate must have a background in
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technologies such as proton ceramic fuel cells and electrolysers. These technologies are central in the transition to renewable energy and in the electrification of industrial processes. The PhD Research
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electrochemistry and materials science of proton-conducting oxides for electrochemical energy conversion technologies such as proton ceramic fuel cells and electrolysers. These technologies are central in
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electrolyzers, fuel cells, micro gas turbines, and batteries, while balancing uptime requirements with efficiency, economic performance and decarbonization goals. Using UiS experimental infrastructure at Risavika