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does the same environmental signal translate into distinct transcriptional programmes across different cell identities of the plant? In this project you will investigate how intrinsic properties
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, cell biology, tissue culture and advanced imaging to study cellular processes during regeneration. You will assist in teaching the new Crop Biotechnology and Engineering (CBE) MSc programme, for example
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shared across tissues, the resulting downstream transcriptional responses remain highly cell-type specific. This raises a fundamental question: how does the same environmental signal translate
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on monitoring complex, superposed deformation signals caused by deep subsurface processes (gas storage, production, and injection) and shallow processes (soil compaction, groundwater dynamics), using satellite
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. The successful applicant will join the lab of Bettina Schwab within the Biomedical Signals and Systems group of the department of Electrical Engineering at the Faculty of Electrical Engineering
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of Technology Mathias Peirlinck creates 'digital twins' of the human heart: personalised computer models that map the functioning of each unique human heart. This work paves the way for the development of more
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societal partners to institutionalize digital work as a source of labor market inclusion; Work in a team with two other PhD researchers from the engineering and social sciences; You will receive mentorship
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signal, e.g., labels of a downstream task, and background knowledge about the concepts. We also envision some practical applications of this framework in cross-species translation (transfer of findings
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-world applications. Your main tasks will include to: Developing (and derivatizing) polylysine-coated microfluidic channel capable of signal processing. Demonstrating programmable release of sacrificial
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communicate by deciphering: (1) which signalling molecules do plants use to recruit these microbes to their roots, (2) what signals do suberin-inducing microbes send to the plant and (3) how do plants integrate