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TBC systems. By combining advanced digital technologies to evaluate the degradation of the TBC and the nature of the environmental contaminants, the project will develop advanced protective coatings
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signals from cells flowing in microfluidic chips (Göllner, ACS Applied Materials & Interfaces, 2025). Such a chip format combined with cheap and small laser diodes for excitation of the photoacoustic
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models combined with the finite element method. Constitutive relations are required to describe material behavior. Advanced stainless steel typically possess complex microstructures across various length
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the German Research Foundation (DFG), at the University of Tübingen. The project is led by Principal Investigators Prof. Dr. Michael Franke, Dr. Marlen Fröhlich (both Tübingen) and Prof. Dr. Manuel Bohn
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institutions across 11 countries, SHIELD aims to train 16 talented doctoral candidates (DCs) through an interdisciplinary approach that combines fundamental science, biomaterials development, and translational
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of Tübingen. The project is led by Principal Investigators Dr. Marlen Fröhlich, Prof. Dr. Michael Franke (both Tübingen) and Prof. Dr. Manuel Bohn (Lüneburg). The successful candidate will support the project
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Your Job: You will work in the Electrocatalytic Interface Engineering department, which is headed by Prof. Dr.-Ing. Simon Thiele. The department focuses on the fabrication, analysis and simulation
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Support Grant of up to £5,000 Access to Disabled Student Allowance, paid sick leave and paid parental leave Supervisor: University of Warwick: Dr Arnab Palit, Prof Andy Metcalfe Eligibility: Satisfy UKRI's
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thickness. We will employ temperature, light, (tunnel) electrons, and soft x-rays to trigger the spin-state switching of the complexes. Using a combination of x-ray absorption spectroscopy (XAS) and in
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of ultra-long graphene nanoribbons (GNRs) encapsulated in hexagonal boron nitride (h-BN). The charge transport properties of these devices will be investigated using a combination of conductance and