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in motor control by computational modelling and non-invasive brain stimulation. The focus of this project will be on advanced versions of transcranial alternating current stimulation (tACS), targeting
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design and digital signal processing. Hands-on RTL design skills (SystemVerilog / Verilog / VHDL) plus scripting (Python / MATLAB / C/C++). Strong command of English. Strong team player with excellent
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protection and control; acting as spaces of inclusion and exclusion. The project draws on media studies and critical heritage studies to analyse heritage tourism as a mediated and power-laden field where
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spaces. The project also critically engages with the growing securitisation of heritage and tourism, whereby heritage sites are increasingly framed as objects of risk requiring surveillance, control, and
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; experience in either is a plus, not a must. Strong motivation to advance data analysis or modeling is essential. Proficiency in scientific programming (e.g., Python, Fortran), version control, and reproducible
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estimation using multi-track Sentinel-1 (C-band) and NISAR (L-band) data. Implement and extend dynamic InSAR processing workflows for near-real-time analysis, including quality control and anomaly detection
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in scholarly publications as well as at international conferences, where you will exchange views with your peers. You have a good command of both Dutch and English, and excellent writing skills. A good
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related fields; a demonstrated ability to perform research (for instance in the form of a Master thesis); the willingness to work collaboratively with other researchers; professional command of English and
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, you will tackle the fundamental challenge of controlling selectivity in multi-step biomass conversions through smart multi-catalyst, multi-reactor design. You will contribute to the Sustainable Process
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. Today, the ocean is changing rapidly because of (human) stressors such as excess CO2, warming and eutrophication. This impacts on the strongly linked but poorly understood ocean processes that control