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description Join the Extreme Materials & Mechanics (X2M) Group at the Department of Materials Science and Engineering (MSE), TU Delft, in a cutting-edge PhD project that aims to revolutionize how stainless
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capacity until 2030 will be challenging to meet. Airborne wind energy (AWE) is an emerging technology that can complement conventional turbines while reducing the material consumption and environmental
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. The project is embedded in the broader EMBRACER programme, which aims to advance our understanding of climate feedbacks. You will therefore collaborate with colleagues in climate science, systems modelling, and
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. However, the technology is not yet fully mature, which creates technical, economic, and scale-up risks during implementation. These uncertainties result in higher-than-expected costs and limit widespread
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inspiring scientific ecosystem. Focusing on key enabling technologies, such as quantum- and nanotechnology, photonics, biotechnology, synthetic biology and materials for energy storage and conversion, our
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Become an EXPLORA-er to study how exploratory behavior impacts perception! And design multisensory EXPLORA kits with your team to show the world what light and materials can do. Job description Two
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architectures are required, such as those inspired by the organization of the human brain that utilize novel materials. Ferroelectric Field-Effect Transistors (FeFETs) exemplify the latter, regarded as a pivotal
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PhD position on Land-ocean interaction across the K/Pg boundary Faculty: Faculty of Geosciences Department: Department of Earth Sciences Hours per week: 36 to 40 Application deadline: 4 January
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-like dynamics in synthetic systems remains a major challenge across physics, chemistry, biophysics, and materials science. In this PhD project, you will: Develop an experimental platform to study 3D self
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compounds that mimic dairy foods.This approach is expected to revolutionize the field. Job requirements The ideal candidate: Has an MSc in Mechanical, Chemical, Materials Eng., Physics, Chemistry or similar