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nanomedicines. In this project specifically, we aim to better understand the interactions between nanomedicines and the cell (membrane). Building upon previous work in the host group, the PhD candidate will use
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aims to rethink how soft robots can interact with their environment, focusing on large-area, multi-point contacts—similar to how an elephant wraps its trunk around an object. Unlike traditional robots
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around us? At Maastricht University, you will investigate how individuals differ in predictive processing by combining behavioural and neural testing with computational modelling. Together with colleagues
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trunk around an object. Unlike traditional robots, which rely on rigid links and localized interaction points, soft robots are composed of deformable materials that can conform to complex geometries and
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Specific Requirements What you will be contributing We are looking for applicants with a background in data-driven environmental science, which have affinity with stakeholder interactions. Applicants should
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Advanced Grant project FLOW. This project investigates the functional roles of brain oscillations for human cognition (attention, memory, cognitive control), explores how brain and body rhythms interact
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Engineering, University of Groningen. The research is aimed at the development of novel methods for nanomedicine characterization and to study their interaction with cells (e.g. uptake, intracellular
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(attention, memory, cognitive control), explores how brain and body rhythms interact to enable flexible cognition, and tests how rhythmic non-invasive neuromodulation can modulate cognition performances. We
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, single-molecule techniques, and optical imaging is welcomed. We foster diversity and female candidates are particularly invited to apply, since the gender balance recently declined with the departure
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to critically reflect on research. You are happy to constructively interact and collaborate with an interdisciplinary team, including local and international collaborators. You look forward to publishing your