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techniques to address some of these challenges. You will join a research group with long-standing expertise in coherent optical scatterometry, a method for measuring the shape of nanostructures by analyzing
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You will join PREFERENCE, an international Marie Skłodowska-Curie doctoral network dedicated to advancing large axial field of view (LAFOV) PET/CT imaging. PREFERENCE brings together 12 academic
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setup in which gas composition, pressure, flow rate and surface temperature can be controlled. Using optical imaging techniques such as back-light imaging and Schlieren, you will study solid CO₂ layer
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natural urge to seek coherence and connection. The faculty consists of nine academic departments within three schools: School of Religion & Theology (SRT), School of Social Sciences (SSc) and School
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differential equations that require careful modeling and analysis. Imaging optics involves the design and optimization of imaging systems, such as cameras and telescopes, to most accurately capture and reproduce
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of Amsterdam, under the supervision of Prof. Noushine Shahidzadeh (expert on crystallization and sol-gel process in confinement) and Prof. Hannelore Derluyn (expert in micro-CT 3D imaging for porous media
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Vrije Universiteit Brussel (VUB) is the recruiting organisation for this position. You will be employed by the Molecular Imaging and Therapy (MITH) research group and embedded in the POLARIS
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collaborate with various partners in the consortium, including partners working on catalyst synthesis, complementary surface X-ray diffraction, and complementary (in situ) electron microscopy. Secondments
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learning, and logical reconstruction techniques. The research investigates how multimodal imaging modalities - including scanning electron microscopy (SEM), photon emission microscopy (PEM), and focused ion
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-relevant phenotypes using cellular, molecular, biochemical, imaging and omics approaches. These models will support compound screening and the evaluation of potential therapies. The project combines stem