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. The state-of-the-art approaches in optimal climate control of greenhouses are based on implementing economic objective functions exploiting a time scale decomposition between short-term climate control/energy
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researcher will combine thermodynamic modelling, process simulation, and crystallization engineering to enable process optimization and scale-up. The tasks include: Development of thermodynamic models
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Optimization of curb space allocation. Job description We are seeking a postdoctoral researcher to lead TU Delft's contribution to the Stritvaiz project, which transforms a former inner-city
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the optimization of biochar production from different biomass types at different pyrolysis conditions to produce biochar with characteristics tailored for specific applications such as the treatment of road runoff
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, and optimization. This research is reinforced by close collaborations with industry. You will receive close scientific supervision while having the freedom to shape your research direction, present your
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: designing, performing and interpreting experiments for simultaneous texturization and flavor generation in PBMAs; contributing to the development and optimization of analytical methods; publishing your
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Challenge: Extreme water events threaten people and infrastructure Change: Understand impact dynamics with experiments and numerical simulations Impact: Optimize the design of resilient
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of materials science, polymer engineering, soft matter physics, and device-oriented prototyping. Information You will: fabricate and optimize liquid crystal polymer coatings with programmable molecular alignment
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though optimal sizing of chargers and mobile battery storage systems based on the demand and through energy management strategies under traction and AC grid constraints. Contribute to two pilots
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integration. Investigate how traction grids can support high-power charging at construction-sites though optimal sizing of chargers and mobile battery storage systems based on the demand and through energy