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as well as funding acquisition and (global) outreach, if desired. International networking and collaborations are regarded as an integral part of the PhD research experience and are explicitly
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well as the irradiation facilities provide unique possibilities for the scientific and industrial use of neutron beams. For a scientific project for Spin-Selective Neutron Detection using Quantum Sensing, we are looking
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to pursue their graduate studies and become innovative and independent researchers. As a PhD student, you will benefit from: • Fully-funded PhD positions (work contracts with social benefits) • Dedicated
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methods on identical locations, to investigate their structural, morphological and functional properties. Able to work independently, in a team and collaborate with other researchers and mentor junior
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. The BEAM projects cover a wide spread of topics, including theoretical physics and chemistry work. For example, our targeted syntheses are supported by models of self-assembly for specific types of molecules
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viral RNA, may play a crucial role in sustaining this immune activation. In this project, we investigate the hypothesis that ultra-low levels of HIV p24 protein, measurable using an ultrasensitive single
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Max Planck Institute for Biology of Ageing, Köln | Koln, Nordrhein Westfalen | Germany | 26 days ago
international research environment at one of Europe's most prestigious ageing research clusters, comprising 49 interdisciplinary research groups Initial work contracts of at least three years with payment based
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experimental systems for cryogenic measurements Development of a microwave quantum control & readout stack Development of Python code to operate quantum systems Detailed experimental characterization
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employees to advance science for society. Join us in breaking new ground and writing success stories –your own and those of our university. Support us as of now in part-time position (65 %) as a Doctoral
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. In particular, we focus on spinal sensorimotor circuits and their role in encoding somatosensory input and motor control. We apply a systems neuroscience approach combining mouse genetics, molecular