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state-of-the-art magnetic resonance imaging (MRI) in parallel to behavioural assessment and histology. The overall goal of the project is to investigate the impact of radiotherapy in brain development
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patterning and key process steps High-speed analog/RF Neuromorphic computing Next-generation logic devices Novel memory concepts Quantum computing Data science and data security GaN power electronics Image
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techniques (e.g., cell culture, Western Blotting, PCR/qPCR, cloning, and recombinant protein expression/purification). Experience with fluorescence microscopy (e.g., confocal, live-cell imaging) or image
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-cell imaging) or image analysis software (e.g., Fiji/ImageJ). Advanced Cell Manipulation (e.g., genome editing via CRISPR/Cas9, flow cytometry/FACS). Basic familiarity with data analysis tools (e.g
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, Biomedical Sciences, Bioengineering, or related fields. Enthusiasm for fundamental science and attention to detail. Motivation to work with an international team of PhD students, postdocs and technicians
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to understand the interplay between human populations and forest dynamics, before and after European contact. You will also become part of our Crossroads Research Centre, a group of PhDs and postdoc working
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techniques (e.g., cell culture, Western Blotting, PCR/qPCR, cloning, and recombinant protein expression/purification). Experience with fluorescence microscopy (e.g., confocal, live-cell imaging) or image
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, before and after European contact. You will also become part of our Crossroads Research Centre, a group of PhDs and postdoc working on various aspects of early modern global history, with a focus on
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the research groups active at the KU Leuven Ghent Campus. This funding call is open to all EU and International applicants. Keywords: Digital Image Correlation, Experimental and Computational Mechanics
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to neurodegenerative disorders. Your PhD project specifically will focus on developing and applying a versatile high-throughput fluorescence imaging platform. In this function you will: optically design a microscope