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at the Department of Electrical and Computer Engineering, Aarhus University, where we are advancing communication-efficient and distributed foundation model inference across the computing continuum
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. Structural biology using electron microscopy, such as cryogenic electron microscopy (cryo-EM) and tomography (cryo-ET). The postdoc will be central for helping to grow the new lab and will collaborate closely
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) molecule fluorescence and other techniques, such as smFRET. Structural biology using electron microscopy, such as cryogenic electron microscopy (cryo-EM) and tomography (cryo-ET). The postdoc will be central
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at the Department of Electrical and Computer Engineering, Aarhus University, where we are advancing communication-efficient and distributed foundation model inference across the computing continuum
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Postdoctoral position in the development of an AI-based phenotyping system for high-throughput sc...
, email: torben.asp@qgg.au.dk Application procedure Shortlisting is used. This means that after the deadline for applications – and with the assistance from the assessment committee chairman, and the
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, email: torben.asp@qgg.au.dk Application procedure Shortlisting is used. This means that after the deadline for applications – and with the assistance from the assessment committee chairman, and the
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contact: Professor Michael L. Nielsen, Department of Molecular Biology and Genetics, Aarhus University, Email: mln@mbg.au.dk . Application procedure Shortlisting is used. This means that after the deadline
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work on cryo-electron tomography studies of regulatory synapses at the axon initial segment of neurons. Expected start date and duration of employment The starting date is 1st September 2026, or as soon
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. Your competences You have academic qualifications at PhD level. Candidates can have a background in a (bio)medical discipline (incl. medicine or dentistry), medical physics, computer/data science
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the physical understanding of the experiments performed in our lab and important guidelines for future work. Potential tasks will be to: model the electronic structure of quantum emitters in layered transition