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Field
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. Candidates must have experience using synchrotron X-ray absorption spectroscopy for determining metal speciation in environmental samples (or similar matrices), and/or experience using synchrotron X-ray
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micromechanical behavior under loading conditions (e.g., tension, compression, creep). Perform detailed microstructural characterization using SEM, EBSD, TEM, XRD, and related techniques. Analyze lattice strain
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science and particle engineering. The successful candidate will be expected to work on the design and engineering of advanced microparticle-based pharmaceutical drug products comprising matrices containing
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Intelligence and Machine Learning, Computational Statistics, Random Matrices, Free Probability, Stochastic Control, Mathematical Finance, Stochastic Partial Differential Equations, Markov Processes, Branching
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-timepostdoctoral researcher to implement analytical platforms for metabolomics/lipidomics in human matrices with the broader aim to implement these findings in exposome studies. The project will be executed
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is typically complicated by the complex nature of food matrices and the frequent need to detect very low numbers of targeted pathogens amongst relatively high numbers of generally benign background
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mixtures, including information retrieval, random access, approximate search, querying and filtering, encryption, compression, and many other information-processing tasks. Our team is looking for a talented
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control, and competing-species effects in highly acidic and complex matrices. Comprehensive use of characterization and quantification tools, including XRD, FTIR, and ICP for phase identification and major
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process integration and mass transfer optimization under corrosive conditions. Investigating material stability, impurity control, and competing-species effects in highly acidic and complex matrices
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molecules from various biological matrices. Knowledge of various extraction protocols (protein precipitation, liquid-liquid extraction, solid phase extraction, etc.). Hands-on experience with different