44 multiple-sequence-alignment positions at Technical University of Denmark in Denmark
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demonstrated expertise in experimental quantum optics and a PhD (or equivalent) in physics, quantum information science, or a related field. We expect you to check multiple of these boxes: Expertise in quantum
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architecture, including a focus on applications, and training methods - across multiple technological platforms - photonics, electronics, biological neurons. Photonics is a promising platform as it provides
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at DanMAX. Collaborate with QIM researchers and help align the development of new image analysis methods with the needs of beamline experiments. Take part in advising MAX IV on infrastructure requirements
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world-class research environment with multiple state-of-the-art facilities in protein biochemistry, cell biology, and quantitative proteomics. The successful candidate will receive strong mentoring and
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optoelectronic platform for in vivo monitoring of brain organoids allowing for modeling of the diseases. The platform consists of two or multiple compartments which allows to monitor interactions between organoids
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about the role, we encourage you to apply even if your experience does not perfectly align with every listed qualification above. We value potential, passion, and willingness to learn. Approval and
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- from individual computing devices to the overall architecture, including a focus on applications, and training methods - across multiple technological platforms - photonics, electronics, biological
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techno-economic and life-cycle assessments to inform system scale-up and industrial adoption. Collaborate with industrial partners to align system design with operational realities in energy and water
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an international, interdisciplinary team of 17 doctoral candidates, based at universities and industrial firms throughout Europe. You will be supported by two mentors within the SPACER project and will have multiple
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them to develop preforms; Draw the multifunctional optical fibers based on modified thermal drawing process of multiple materials (e.g. polymers and metals) with strongly different thermomechanical