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LC-MS/MS method for their analysis in different matrices. The method is further developed by including other fermentation-derived metabolites and is used for analysis of thousands of samples in
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engineering. The successful candidate will be expected to work on the design and engineering of advanced microparticle-based pharmaceutical drug products comprising matrices containing crystalline or amorphous
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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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. 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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computing, dynamical systems, and applied mathematics to develop new mathematical frameworks for representing, compressing, and computing with complex physical systems. The project is carried out in close
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-structures within robust polymer matrices without compromising their physical integrity. Responsibilities Lead cutting-edge research in polymer rheology and processing science, directly aligning with KAUST’s
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; experience performing metabolic analysis using mass spectrometry, especially in complex matrices; experience with metabolomic pathway bioinformatics analysis and development of rapid point-of-use analytical
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in matrices, compartments, or culture configurations relevant to implantable systems. Develop assays to evaluate stimulation-response behavior, secreted therapeutic output, optical reporter performance
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to implant-relevant materials, compartments, matrices, and culture configurations. Evaluate long-term cell viability, proliferation, stability, reporter output, and functional response under controlled