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interaction with the environment, with the goal of understanding their optical signatures and improve their performance. You will work in close collaboration with the experimental team. Your theory will provide
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at the Center for Energy Resources Engineering (CERE), Department of Chemical and Biochemical Engineering, Technical University of Denmark (DTU). You will work in a state-of-the-art microfluidics and
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qualifications You will lead the computational and AI-driven aspects of the project. Your responsibilities will include: Designing and implementing state-of-the-art deep learning architectures for protein
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peptide ions, including charge state behavior and fragmentation pathways Independently operate, optimize, and troubleshoot state-of-the-art MS instrumentation, including Orbitrap platforms and TIMSTOF
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. An extension of 1–2 additional years may be offered, subject to satisfactory performance. Job description The successful candidate will contribute to cutting-edge research on topics including: Token compression
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team includes a medical PhD student with pathology expertise who performs surgical specimen collection, tissue slicing, micro-CT scans, histological processing, and initial registration. The postdoc will
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chemistry of peptide ions, including charge state behavior and fragmentation pathways Independently operate, optimize, and troubleshoot state-of-the-art MS instrumentation, including Orbitrap platforms and
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. An extension of 1–2 additional years may be offered, subject to satisfactory performance. Job description The successful candidate will contribute to cutting-edge research on topics including: Token compression
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, in situ instrumentation, and remote sensing. Experience with the setup, operation, and field work in relation to mussel longline aquaculture systems. Experience with the setup, deployment and
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properties on glycoside hydrolase (GH) performance in transglycosylation. Responsibilities and qualifications You will work with state-of-the-art platforms, including cell-free expression, microbial expression