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of biotechnology relevant compounds. Individual pathway enzymes will be characterized and optimized and fungal strains will be developed that result in optimal production while downstream processing aspects will
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the brain samples for downstream imaging and atlas mapping. Imaging is anchored by the NIH-funded Imaging & Behavioral Neuroscience (IBN) Core Facility - whole-brain 3-D microscopic imaging
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solutions to PDEs . Your work will involve utilizing GPU code generators for matrix multiplication kernels and ensuring the software is usable in Python for downstream data analysis [2]. Collaboration is
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with upstream lignin processing and downstream application of the produced chemicals. Where to apply Website https://www.academictransfer.com/en/jobs/362361/phd-catalytic-upgrading-of-lign… Requirements
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well as engineering solutions for downstream processing. This position offers a unique opportunity to work at the interface of nanomedicine, molecular modeling, and process engineering, while contributing to the future
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, generate the behavioral data and brain samples that feed downstream imaging, atlas mapping, and ML/AI work. The NIH-funded Imaging & Behavioral Neuroscience (IBN) Core Facility supports both ends
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familiarity with downstream transcriptomic methods (e.g. RNA sequencing, RT-qPCR). Experience with live-cell fluorescence imaging, including confocal microscopy and the use of genetically encoded biosensors
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is part of the national research programme DDLS. Data-driven life science (DDLS) uses data, computational methods and artificial intelligence to study biological systems and processes at all levels
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, chemotherapy, viral infections and diabetes mellitus. Looking at clinical studies, the current research process is to propose a model, conduct animal tests and then evaluate whether the original model is
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to create knowledge for a better world. You will find more information about working at NTNU and the application process here. About the position aiD – AI for Decisions – is one of Norway's new national AI