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developers of GEOSX. We expect that the project will provide a new paradigm for performing compositional simulations for various underground CO2 storage processes. The project is a part of the INNO-CCUS
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electron microscopes. The successful applicant will be part of a highly international team composed of light and electron microscopy application specialists, an image analyst, laboratory technicians and
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characterization techniques and alternative design solutions. Your primary responsibilities and tasks will be to: Perform the sensitivity analyses on the process and material parameters, towards quality improvement
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focuses on two key challenges. The first is to create methods for an automated and efficient segmentation of computed tomography images of the abdomen region and converting these to computational meshes
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-specificityGPCR pharmacology. The project will be based on high-throughput processing of fluorescence images for the quantitative detection of multiple signaling pathways in single living cells. It will include
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background in machine learning, along with hands-on experience in computer vision and image processing. Our commitment is to conduct research at a high international standard, publishing outcomes in top-tier
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. literature searches and image processing. Qualifications Applicants are expected to have the following qualifications: an MA in archaeology, history or a related discipline a strong interest in the academic
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at scientific excellence and want to establish a career as a scientist within fiber lasers and supercontinum sources and their high-level applications within imaging and spectroscopy, then we have the ideal
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learning and interested in utilizing AI to generate images, such as diffusion models? Do you also have a strong desire to make a tangible impact on society? If so, this PhD opportunity may be the perfect fit
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you aim at scientific excellence and want to establish a career as a scientist within fiber lasers and supercontinum sources and their high-level applications within imaging and spectroscopy, then we