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. This will include sample extraction, clean-up, and pre-concentration techniques for trace organic analysis in complex matrices, as well as analysis using Liquid Chromatography High Resolution Mass
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1. A Ph.D. degree in Aerospace Engineering, Fluid Mechanics, Applied Mathematics, or a related discipline. 2. Demonstrated expertise in turbulence modelling and compressible
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. Apart from a PhD in physics, chemistry, or similar, the candidate should have experience in at least some of the following areas: - Amplified femtosecond lasers, few-cycle pulse compression, pulse
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maritime traffic and identifying species present in the ecosystem. In this context, particular emphasis will be placed on the collection, compression, and fusion of acoustic data acquired via DAS systems
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expertise in the field of concrete compression structures, SHM and NLFEA and to work in a multidisciplinary team with researchers from industry and academia. About the Person: The successful candidate must
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the quantitation of water-soluble biomarkers (e.g., vitamins B1, B2, and B6, methylmalonic acid) in serum, plasma, or whole blood matrices. Analytical method development and validation: You may gain experience in
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of contaminants of emerging concern in complex environmental and biological matrices. The core of the project is the use of supramolecular solvents (SUPRAS) and deep eutectic solvents (DES) as sustainable
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of protein gels, microgels, fat mimetics, and structure–function relationships in food matrices. Familiarity with sensory evaluation, texture analysis, and rheological measurements, food system
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containing a large excess of wild-type DNA. Experience working with urine, clinical samples, wastewater or other complex biological matrices. Knowledge of integrating nucleic-acid amplification with a non
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. • Evaluating the engineering performance of carbonated soil mixtures, including strength, stiffness, compressibility, permeability, durability, and bearing capacity for land reclamation and earthwork