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their structure-property relationships with support of a comprehensive metallographic laboratory, including optical microscopy, SEM, and TEM capabilities. We are looking to expand our network of collaborators by
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testing techniques (e.g., microbending, micropillar compression, and in-situ testing in a scanning electron microscope), as well as microstructural analysis using electron and scanning probe microscopy (SEM
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analysis of large datasets, high-throughput metabolomics, time-lapse microscopy, to investigate how to pharmacologically interfere with fundamental mechanisms in the regulation of cancer metabolism
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Description We invite applications for a fully funded PhD position within the DFG Priority Programme SPP2389. https://tu-dresden.de/mn/biologie/allgemeine_mikrobiologie/spp2389?set_language=en
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science using scanning probe microscopy across atomic-to-mesoscale regimes in collaboration with Professor Hiroshi Imada (scheduled to start his post at IMS on May 1, 2026). Participation in managements
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for operationalizing the room-temperature magnetoresistance effect of spintronic devices at a nanoscopic level by relying on single molecules or molecular-based 2D single layers. Scanning Tunneling Microscopy (STM
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candidate will use a combination of microscopy, proteomics, genetic constructs, and in vitro reconstitution to study if these change in biomass density results in phase transitions in the cytoplasm and if
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this role requires detailed, deep-phenotyping and molecular analysis, it provides an excellent opportunity to develop your microscopy skills, molecular biology and data/image analysis. This role offers
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, and microscopy techniques to investigate the disease genetics and developmental biology of the trachea ("windpipe") and esophagus ("food pipe"). For more information visit https://edwards-lab.org. Our
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Materials, Bioinspired Materials and Sustainable Materials. For more details, please view https://www.ntu.edu.sg/mse/research . This position supports frontier research in the electrocatalysis of hydrogen