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electrochemical interfaces for electrocatalysis and batteries. You will investigate how the properties of the electrode-electrolyte interface can be leveraged to optimize the activity, selectivity, and stability
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smart optical interfaces, require materials that can guide light selectively: information should be visible to the user, while remaining hidden from outside observers. This project addresses
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at the interface of biophysical modeling, soft matter and cell mechanobiology at the Groningen Research Institute of Pharmacy, within the Faculty of Science and Engineering at the University of Groningen. What
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will be used to develop constitutive models for the welded interface. In particular, these models should describe progressive interfacial damage development as a function of fatigue loading. The models
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efficiency, and system robustness. The primary objective of the project is to develop novel circuit topologies and design techniques that push the state of the art in high-speed optical interfaces. Key
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sight and sound: liquid crystal polymer-based tactile interfaces for the digital age.” The project aims to create interactive coatings that generate realistic tactile sensations for applications in human
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characterize their mechanical performance and damage evolution. The experimental results will be used to develop constitutive models for the welded interface. In particular, these models should describe
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of extension subject to additional funding. - A gross monthly salary starting at € 3217 on a full-time appointment (scale PRO, CAO UMC) - The opportunity to contribute to cutting-edge research at the interface
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their mechanical performance and damage evolution. The experimental results will be used to develop constitutive models for the welded interface. In particular, these models should describe progressive interfacial
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of compute processors. Today’s AI compute processors have multi-Terabit/s interfaces to share intermediate data for distributed training and processing, generating large traffic flows. Low and deterministic