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Field
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extreme hot items, chemicals, and exposure to pathogens, parasites, blood, and body fluids. This job specification describes the general nature of the work performed, representative duties as
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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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identify candidate proteins associated with the formation and development of infectious parasite stages. LCCL domains are found in proteins associated with developmental and structural processes in several
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lab techniques: classical diagnostic parasitology techniques, microscopy, parasite culture, in vitro assays, DNA and RNA extraction, PCR, RTPCR, qPCR, qRT-PCR, digital PCR, and ELISA. Experience with
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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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: 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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of the beneficial microbes from soil with biological control potentials against plant parasitic nematodes and study the nematode-microbe interactions. The Lab Assistant will provide research support for two ongoing
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are seeking a temporary research technician to assist the study of plant- and insect-parasitic nematodes and their associated microbial consortia. We aim to develop maintenance protocols such as
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | about 8 hours ago
temporary contract. This position offers an exciting opportunity to contribute to cutting-edge structural biology research that focuses on lipid transport mechanisms in malaria parasites. The technician will
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-saving research on vaccines and infectious diseases. The Kappe Lab is seeking a motivated Postdoctoral Fellow. The Kappe laboratory has pioneered the development of genetically attenuated malaria parasites