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Field
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the structure and function of microbial communities in Antarctic marine sediments. Fermentative microorganisms play a key role in the initial anaerobic breakdown of organic polymers, supplying substrates
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investigate the structure and function of Antarctic microbial communities involved in the degradation of organic matter in iron-rich marine sediments and, consequently, in elemental cycles within marine
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. Willingness to work as part of a team, travel to field sites, a strong work ethic, and the ability to complete tasks in a timely and structured fashion are also necessities. Essential: Master's degree in
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aims at obtaining further academic qualification (usually PhD). Tasks: design, conceptualization and assembly of electrochemical devices (batteries, supercaps) for sustainable electronic applications and
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-resolved momentum microscopy, near-field nanoscopy, fluorescence-based super-resolution microscopy, ultrafast atomic force microscopy, and time-resolved cryo-electron microscopy. • Employing these one-of-a
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. This PhD project combines laser optics, precision metrology, electronics, and advanced data analysis in close collaboration with the University of Bonn and an international DFG-funded research unit
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and X-ray experiments to explore the structural, electronic, and magnetic properties of quantum magnets Developing an understanding of the underlying magnetic processes through complex data analysis and
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the interplay between brain structure and function within a collaborative and interdisciplinary research environment. The successful candidates will be involved in all steps of the research endeavor including
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communication and collaboration skills in English. Soft skills: analytical thinking, structured and organized work, and high intrinsic motivation. Preferred: Experience with linear operators, eigenproblems
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Degree PhD Course location Hamburg In cooperation with Helmholtz Centre for Infection Research, Helmholtz Centre hereon GmbH, Max Planck Institute for the Structure and Dynamics of Matter, European