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Field
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: to develop next-generation autonomous crop monitoring and decision-support systems for Controlled Environment Agriculture. By integrating plant sensing, data and crop models, we aim to enable more precise and
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, breakers, reactive-power devices, HVDC and MTDC terminals and offshore connections, including their controls. Model substations, protection and measurement systems, so that faults, islanding and cascading
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: to develop next-generation autonomous crop monitoring and decision-support systems for Controlled Environment Agriculture. By integrating plant sensing, data and crop models, we aim to enable more precise and
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Atomic Scale Processing for future chips and energy. The central challenge is to design and control materials at the atomic scale to enable next-generation devices with unprecedented performance
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18 Sep 2026 Job Information Organisation/Company University of Groningen Research Field Engineering » Control engineering Engineering » Systems engineering Researcher Profile Recognised Researcher
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soil moisture, temperature, and subsurface heterogeneity strongly influence the quality of geophysical observations. Improving our ability to image and monitor the subsurface is essential
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control would be advantageous, but is not required. Strong verbal and written communication skills in English are required, together with enthusiasm for collaborative, hands-on research. You are motivated
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for autonomous systems, healthcare and rehabilitation. You will design and conduct behavioural experiments and develop computational models of multisensory integration and sensorimotor control, using approaches
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, pumps, valves operated by a computer and the corresponding software Develop flow cells to connect various spectroscopic tools to the setup Create and validate reproducible automated workflows
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what you are going to do Design and build flow setups using 3D printer, pumps, valves operated by a computer and the corresponding software Develop flow cells to connect various spectroscopic tools