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stereolithographic, 3D printing and textile techniques like tufting, machine-based embroidery techniques or non-interlaced 3D pre-forming. Development of advanced imaging and characterization technologies (X-ray micro
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stereolithographic, 3D printing and textile techniques like tufting, machine-based embroidery techniques or non-interlaced 3D pre-forming. Development of advanced imaging and characterization technologies (X-ray micro
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of a unique and collaborative research environment in micro- and nanotechnology, housing over 250 researchers and PhD students. The main research activities at the terahertz and millimetre wave
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of Microtechnology and Nanoscience , you will be part of a unique and collaborative research environment in micro- and nanotechnology, housing over 250 researchers and PhD students. The main research activities
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research project We have recently developed a novel orientation method using a Halbach array, capable of producing uniformly aligned nanostructures with arbitrary orientation (Ghai et al., Advanced