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We are seeking a motivated and creative PhD student to develop the next generation of AI-driven protein design methods that explicitly account for protein–lipid and protein–membrane interactions
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We are seeking a motivated and creative PhD student to develop the next generation of AI-driven protein design methods that explicitly account for protein–lipid and protein–membrane interactions
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, including long-term laboratory experiments, strain maintenance, culturing, and phenotyping. These are labor-intensive and require strong commitment and planning. Molecular and genomic analyses, including
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, including long-term laboratory experiments, strain maintenance, culturing, and phenotyping. These are labor-intensive and require strong commitment and planning. Molecular and genomic analyses, including
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students, postdocs and technicians. Excellent communication skills and fluency in English. Our offer A doctoral scholarship for a period of 1 year to start with. Following a positive evaluation, the
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, nanopores, and ion channels for in vitro bioelectronic applications. The project sits at the interface of protein design and applied technology: the successful candidate will learn and apply state-of-the-art
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, nanopores, and ion channels for in vitro bioelectronic applications. The project sits at the interface of protein design and applied technology: the successful candidate will learn and apply state-of-the-art
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strongly encouraged to apply. Please note that this is an international call. Local candidates should contact PIs directly, independent of the program. How to apply To ensure your application is considered