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). Additionally, the flow modeling is enhanced in a stepwise manner. Initially, a flow model developed during the first funding phase is applied and compared with measurements. At present, this model accurately
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structures are complex superstructures composed of different nanoparticles, similar to how atoms are linked to molecules. This results in innovative, exceptionally promising optical and electronic properties
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the precursors and optimize the fabrication process. We also seek to combine the electrical, structural, and optical measurements to study the performance of perovskite-based solar cells in operando . - X-ray nano
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structures are complex superstructures composed of different nanoparticles, similar to how atoms are linked to molecules. This results in innovative, exceptionally promising optical and electronic properties
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within in the field of high-speed integrated circuit (IC) design with a focus on: • Electro/optical high-speed analog and mixed-signal IC design • Millimeter-wave efficient and linear power amplifier
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using intense ultrasound waves. For this interdisciplinary project involving optics, electronics and acoustics, we are seeking a self-driven, highly motivated PhD student. About your role: Develop novel
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chemistry, biophysical analysis via optical spectroscopy as well as the detection of nucleic acid in homogenous solution and in situ. The project also involves fluorescence microscopy and flow cytometry and
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applications in information technology and are based on electrical, magnetic or optical functionalities. The Department of Nanoelectronics is looking for a PhD Student (f/m/d) Cotutelle PhD position in physics
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applications in information technology and are based on electrical, magnetic or optical functionalities. The Department of Nanoelectronics is looking for a PhD Student (f/m/d) Metallic and semiconducting
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the following PhD project: The genomic integrity is extremely important for the normal cellular functions. However, cells are routinely challenged by various DNA damaging events leading to the formation