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the University of Groningen. The research will be carried out in the Systems, Control and Optimization Group. Our group is part of the Jan C. Willems Center for Systems and Control that unites the different
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optimization and scale-up. The tasks include: Development of thermodynamic models for multicomponent lithium salt systems Modelling and simulation of the integrated crystallization and electrolysis process
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the effects of optimized gene expression regulation on plant performance under optimal and field-like conditions at the Netherlands Plant Eco-phenotyping Centre. Your research aims to improve tomato Zn and Fe
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critical for achieving power-efficient operation, programmability, high linearity and low-noise signal conditioning including optimal dynamic range and bandwidth utilization. This position offers a unique
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Agenda and the Brazilian research council CNPq . Within the project, you will closely collaborate with another PhD candidate at Utrecht University on spatial optimization of land use, as well as with
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perform desktop studies related to process design and optimization, techno-economic evaluations, and screening of purification technologies. What are you going to do? The main objective of this EngD project
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Are you excited about applying mathematical modelling, optimization and control to accelerate the energy transition? In this PhD project, you will develop advanced Process Systems Engineering
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on identifying suitable electrode materials and optimizing reaction conditions, electrolyte composition, and solvents, using three-electrode configurations and organic carbonate-based media. Building
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part of a new lab at the Delft Center for Systems and Control, supervised by Gabriel de Albuquerque Gleizer. The research will allow you to gain deep insights across nonlinear dynamics, optimization, and
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confidence in the measurements and establish traceable validation routes. Optimize the methods for realistic converter operating conditions and communicate practical guidance to academic and industrial users