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alternating magnetic fields from the outside and will perform adjustable frequency stimulation by novel nano-modified, compliant electrodes only touching the brain. Network formation will be enabled by
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NIST only participates in the February and August reviews. The goal of this project is to develop nano-electromagnetic imaging using scanning microwave, NV center, and magnetic resonance microscopy
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Microscopy (SEM) studies and Atomic Force Microscopy (AFM) investigations. Bibliography: 1) M. Kowalczyk et al. Optical Materials Express 6, 2273-2282 (2016). 2) R.-N. Verrone et al. ACS Applied Nano Materials
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: Ridone, P., Vassalli, M. & Martinac, B. Piezo1 mechanosensitive channels: what are they and why are they important. Biophys Rev 11, 795–805 (2019). https://doi.org/10.1007/s12551-019-00584-5 . Lüchtefeld
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research group (NANO) and also participate in collaborative research with the upcoming SFI center; Norwegian Center for Intelligent Computers and Electronics (NICE) Norwegian Centre for Intelligent
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to the nano/bio interfaces. The group vision is to see our materials impacting in Nanomedicine, Information Technologies or Energy and Environment. ICMAB – CSIC is a multidisciplinary global reference centre
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of Electronics and Informatics (http://www.etrovub.be/) of the Vrije Universiteit Brussel (VUB), performs fundamental and applied research in Micro- & Optoelectronics, multidimensional signal processing, and
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to support the property-driven design of molecules for ultrasensitive imaging and nano-optoelectronics applications. The project is supported by a range of national and international partners and provides
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including employment history, list of publications, H-index and ORCID (see http://orcid.org/ ) Teaching portfolio including documentation of teaching experience Academic Diplomas (MSc/PhD) Representative
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copies of official documents, as we cannot return your materials after the application process is complete. For more detailed information, please visit our Homepage: https://www.epc.ed.tum.de/td