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The University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 13 days ago
models of SIV/HIV infection or other viral infection models with expertise in flow cytometry, tissue culture, and cellular immunology to facilitate translational research at the clinical/basic science
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to bring disruptive new products to market by surpassing technological benchmarks and pushing the boundaries of current technology, including fields like artificial intelligence, cybersecurity, next
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to carry out high-performance numerical simulations using our in-house CFD code, extract physical insights from simplified flow models, and characterise synchronisation thresholds and the robustness
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engines, editors and project management software; Knowledgeable about all facets of 3D Modeling and Animation for game design and development, including technical, managerial and artistic advances; current
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and turbulence gradients in wind tunnels; and new insights for modelling particle-laden turbulent flows in realistic non-homogeneous environments. Location: The PhD will take place at LMFL lab in
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uses cutting-edge techniques including single-cell and spatial transcriptomics, proteomics, super-resolution microscopy, in vivo tracking, mouse models, and human patient tissues and iPS-derived cells
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ventricular tachycardia. Current clinical methods for mapping these circuits are invasive and often failing to capture the full circuit before the arrhythmia terminates. Mathematical models in the form
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prevention of criminal activities and hate speech on social media. The system processes massive datasets to refine behavioural models and identify individual risk patterns. Supported by Natural
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for the detection and prevention of cyberattacks and data exfiltration in network infrastructures. The system processes massive datasets to refine network behavior models and identify attack vectors and anomalies
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high information content Flow MRI datasets with physics based modelling and Bayesian inference to determine constitutive models for non-Newtonian and other complex fluids in situ. The project will