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understanding of physical processes in pond ecosystems by analyzing the spatial and temporal dynamics of water temperature and its role in driving density-driven flows and mixing. By combining innovative field
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. Duration Funding can be granted for 3 years. A 6-month extension is possible upon individual request. The maximum funding period is 42 months. Doctoral students with children can be funded for up to 54
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possible date. The position is limited to 36 months with the option of extension. The period of employment is governed by the Fixed Term Research Contracts Act (Wissenschaftszeitvertragsgesetz - WissZeitVG
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chemistry, biophysical analysis via optical spectroscopy as well as the detection of nucleic acid in homogenous solution and in situ. The project also involves fluorescence microscopy and flow cytometry and
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collaborating at the WindLab centred on wind physics. Our mission is to develop an improved understanding of atmospheric and wind power plant flow physics required to serve the global demand for clean and
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during the funding period can be supported if they do not exceed 25% of the total funding period, and do not take place directly at the beginning of the funding period. Applications from developing
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hours. The period of employment is governed by the Fixed Term Research Contracts Act (Wissenschaftszeitvertragsgesetz - WissZeitVG). The position aims at obtaining further academic qualification (usually
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group E 13 TV-L) starting September 1, 2025. The positions are limited to 3 years. The period of employment is governed by the Fixed Term Research Contracts Act (Wissenschaftszeitvertragsgesetz
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50% of the full-time weekly hours and is limited until June 30, 2028 within the CRC 1415 project “Revealing Ion Transport and Storage Properties of 2D Materials” (B10). The period of employment is
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, leukemogenesis and hematopoietic stem cells is essential. Experience with cell culture and standard molecular and cell biology techniques (e.g., PCR, cloning, DNA/RNA purification, flow cytometry) is highly