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the CAPeX Pioneer center (https://capex.dtu.dk/ ). The project involves design, synthesis, characterization, and testing of molecular transition metal coordination compounds, as electrocatalysts for oxidation
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international partners to develop evidence-based solutions that inform policy and advance public health in Singapore and the region. SSHSPH provides a dynamic, interdisciplinary environment that supports
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this project will be to elucidate how VEL polymerization properties influence epigenetic silencing dynamics in the regulation of cold-induced flowering (vernalization). The research will combine
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working environment that is dynamic, stimulating and welcoming. Molecular mechanisms of excitatory glycine receptors The PhD student will join Pierre Paoletti's team dedicated to the molecular and
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techniques to investigate ion channel properties and gating mechanisms in sensory neurons. Calcium Imaging: Use calcium imaging techniques (e.g., Fura-2, Fluo-4, GCaMP) to study intracellular calcium dynamics
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field of molecular chemistry and hybrid functional materials. He/She will be involved in the design, experimental work and characterization of new molecular systems exhibiting tunable properties
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barrier in the planned KBS-3 concept for final disposal of spent nuclear fuel. The PhD student will develop, apply, and combine theoretical molecular dynamics (MD) simulations with experimental techniques
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experiments, mapping charge and energy transfer in molecular (and mesoscopic) systems, behavior of molecules in strong fields, dynamics of open quantum systems, and more. This project offers an excellent
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and molecular modelling, quantum dynamics and quantum information, complex systems, biophysics, and multidisciplinary challenges in, e.g., computational cardiology. 3.Photonics https://www.tuni.fi
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multidisciplinary and dynamic research team utilizes state-of-the-art structural biology, biochemistry, cell biology, and biophysical techniques to explore the molecular basis of cell signaling across biological