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Experience with FACS, immune cell culture, molecular biology techniques and bioinformatics is advantageous Strong communication skills and fluency in English (spoken and written). Benefits: Fully funded PhD
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to characterise mice in terms of their cognitive, social and emotional behavioural spectrum Molecular and cell biology analyses of neuroplasticity, endocrinology and immunology using established techniques (e.g
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and interdisciplinary team Coordinate projects between different institutes and research-centres Willingness to travel for scientific exchange between project partners Good and active communication
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include in detail: Experimental work in vitro to investigate mixtures with human cell lines and organoids in microphysiological systems (MPS) Systematic testing of whole mixtures and single substances and
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database and literature review to extract relevant co-exposure scenarios for in vitro testing Experimental work in vitro to investigate mixtures with human cell lines and organoids in microphysiological
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-based concepts including equity and fairness within mobility systems. This position will be closely involved in developing and implementing the new methodologies thereby helping to create more equitable
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reliable, conscientious, and structured work, commitment, initiative, teamwork skills, scientific curiosity, and willingness to learn willingness to be mobile (especially with regard to the required
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atomic vapors. Develop advanced 3D vapor cell specifications to be manufactured at IFSW. Investigate and characterize the properties of the 3D vapor cells using various laser spectroscopy methods
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change in ultrafast optics pushed, among others, by DESY, one of our research topics focuses on the development of ultra-short pulse Ytterbium lasers employing multi-pass cell post-compression. In close
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transition. The optimal production, transport and storage of hydrogen are indispensable for it. The researchers are working on the system design of mobile hydrogen storage, infrastructure for stationary energy