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challenges associated with the iron anode, including parasitic hydrogen evolution, limited active material utilization, and long-term cycling stability. Addressing these challenges is essential for enabling
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: Develop current-sensor concepts targeting a bandwidth above 300 MHz and an insertion inductance below 1 nH. Model the electromagnetic behaviour, parasitic effects, transfer characteristics and limitations
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, optical losses still limit device performance. Reflection losses, parasitic absorption, and incomplete spectral splitting reduce the efficient use of sunlight in tandem architectures. In this PhD project
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. Your research: Develop current-sensor concepts targeting a bandwidth above 300 MHz and an insertion inductance below 1 nH. Model the electromagnetic behaviour, parasitic effects, transfer characteristics
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for survival, transmission and host adaptation. Among the most fascinating examples are the trypanosomatid parasites, a group that includes the causative agents of leishmaniasis and sleeping sickness
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among other things work with the parasite Ichthyophthirius multifiliis and the bacterium Vibrio anguillarum, using complementary in vivo and in vitro approaches, live imaging and molecular analyses
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%, demonstrating their enormous potential for next-generation photovoltaic technologies. Despite this rapid progress, optical losses still limit device performance. Reflection losses, parasitic absorption, and
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to artifacts such as non specific absorption, parasitic reactions, or diffusion based resolution loss. In this project, we will design and control a surface modifcaiton process based on a double, photo
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cyst nematode and Pectobacterium spp. infections are common in some areas, simultaneous infection of both pathogens in the same host are almost never seen. As obligate, sedentary parasites, PCN must
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Leibniz Institute for Natural Product Research and Infection Biology - Hans Knöll Institute • | Jena, Th ringen | Germany | about 2 months ago
to parasitic interactions. How these complex, multi-organismic networks are regulated by microbial communication is still poorly understood. We are interested in the production and ecological function