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the structural flexibility of organic template-free zeolite nanocrystals. Flexibility will be explored across zeolites with small, medium, and large pores and cages, driven by the movement of cations under
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of GHG exchange using the canopy method with surveys of additional data (partly also from cooperation partners), such as water levels, soil moisture, soil and air temperatures, DOC and nutrients in pore
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desirable pore structures, and improving conductivity. Additional functionalisation may also be relevant to enhance properties or achieve ion selectivity. Furthermore, the developed materials will be tested
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Coordinator, SAS- Fox Leadership Program and Penn Program on Opinion Research and Election Studies (PORES) Job Profile Title Research Coordinator Job Description Summary The Penn Program on Opinion Research and
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of absorbing, retaining, and releasing molecules within their pores. The main challenge in designing such adsorbents is to enhance their storage capacity at ambient temperature and pressure while maintaining
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position (contract-based) and one PhD fellowship in Computational Biophysics/Chemistry (see also https://constructor.university/comp_phys). The PhD position is focused on efficient algorithms
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against experimental observations Bridging scales from pore-level processes (µm) to sample-scale behaviour (cm) through integrated experimental-numerical approaches To achieve this, you will be doing in
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across the vesicle bilayer will be achieved with protein nanowires, ionophores and pore-forming proteins. The project will involve protein purification, protein engineering, spectroscopy, photochemistry
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wave theory in inhomogeneous, expanding waveguides that have steady flows. Wave propagation and instability theory will be developed and applied to a number of solar structures from pores, magnetic
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focuses on the modelling of electrodes for redox flow batteries to clarify the influence of electrode surface properties on the macroscopic electrode properties. Pore-scale electrode modelling and numerical