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Project Description We invite applications for a postdoctoral position in experimental mass spectrometry-based proteomics, focused on peptide ionization, charge state behavior, and fragmentation
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potentials (ENNPs) to model nanoparticle energy surfaces. Building atom-explicit ground-state models of supported and unsupported nanoparticles. Modeling catalytic reaction kinetics to identify active sites
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University. Our research covers physics, chemistry, microbiology, social sciences, geography, and environmental economics, addressing global challenges such as pollution control, land and water management
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Science including quantitative and qualitative consumer research methodologies, and experience in designing consumer studies in and out-side Denmark. Solid experience in statistical analysis are preferred
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at Aarhus University. Our research covers physics, chemistry, microbiology, social sciences, geography, and environmental economics, addressing global challenges such as pollution control, land and water
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join a dynamic research environment with access to state-of-the-art facilities and strong collaborative ties across inorganic, coordination, organometallic and enzyme chemistry. Expected competences
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Science including quantitative and qualitative consumer research methodologies, and experience in designing consumer studies in and out-side Denmark. Solid experience in statistical analysis are preferred
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processing methods (such as solid-state chemical synthesis and wet chemical-based approaches) to fabricate all-solid-state sensor structures Set up experimental work to identify areas for sensor improvement
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students. Qualifications As a formal qualification, you must hold a PhD degree (or equivalent) in physics, photonics engineering or a related topic. A strong background in laser spectroscopy and solid state
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Job Description If you want to advance your career by working at the forefront of solid oxide electrolysis technology, this position offers a unique opportunity. You will apply and expand your