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Field
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compare the simulated galaxies to JWST observations (in particular COSMOS-Web). - Creation of synthetic observations from the numerical simulations; - Scientific exploitation and interpretation
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outstanding candidates who are experienced in, and excited about, conducting high-quality research in an area that combines applied mathematics/mathematical physics and electromagnetic analysis
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presentations. - Possess a solid background in addiction or health behaviors research and/or behavioral economics. Preferred Qualifications - Experience with behavior analysis and/or addiction research
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or natural sciences, good theoretical and practical knowledge in the field of statistical or numerical analysis of hydrological or oceanographic processes, excellent command of English (reading, writing and
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of the fastest-growing academic health centers in the nation, Texas A&M Health encompasses five colleges and numerous centers and institutes working together to improve health through transformative education
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and experience with in vivo imaging (2-photon, miniscope, or wide field). • Good knowledge of neural data analysis and solid programming skills (preferably in Python). • Prior knowledge
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following areas is required: bioinformatics analysis of high dimensional data (R/Python), metabolomics, tissue/organoid culture work, (anaerobic) bacterial culture. Highly beneficial experience at all levels
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used in our work centre around optical imaging and spectroscopy and nanofabrication. The work also relies on theory and simulation, specifically focusing on numerical mean-field electrostatics
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several areas of ongoing research in the laboratory, including the isolation and genomic analysis of large DNA viruses, cultivation of diverse hosts, analysis of evolutionary relationships and genomic
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analysis of fluid dynamics, advanced skills in programming and numerical methods, writing scientific reports and articles, presenting at scientific conferences. Behavioural skills : Independence, ability