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Description Do you want to creatively design polymers and coatings for cutting-edge energy applications? Are you motivated by the challenge of advancing emission-free transport? Do you thrive in a
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mathematical modelling? Then you could be the ideal PhD candidate for this position. Self-assembled structures of colloidal particles and/or polymers at a liquid-air interface can be spontaneously generated when
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, microfluidics, colloidal synthesis, and mathematical modelling? Then you could be the ideal PhD candidate for this position. Self-assembled structures of colloidal particles and/or polymers at a liquid-air
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delivery to the foam on your cappuccino: the properties of small molecules, polymers and proteins in the mixture together define the key properties of these systems. Predicting these properties by only
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team as a PhD candidate! Chemistry is a science of mixtures. Whether you think of complex formulations for drug delivery to the foam on your cappuccino: the properties of small molecules, polymers and
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the development of a Virtual Training Environment (VTE) for disaster response simulation, integration of Building Information Modelling (BIM) with Structural Health Monitoring (SHM) using smart sensor networks, and
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on addressing the complexity of the device-software-application-data design space, enabling systematic and efficient exploration using modeling and simulation tools.## Key Responsibilities- Identify and
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for cell sheet models in 2d, and for experimental 3d systems of entangled active polymers that share properties with clusters of living worms. This project involves an interdisciplinary team with broad
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, tailored, complex materials such as advanced polymers or polymeric formulations, catalysts, mechatronic devices and software and algorithms. Design, control and modelling and analyses complement
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of Groningen, Nijmegen, Eindhoven and Tilburg). The PhD project in this vacancy contributes to the development of the above EmPowerED toolbox by developing simulation models for individual physical components