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materials. This PhD project is part of an original research-creation initiative combining engineering, life sciences and design. Its objective is to develop innovative experimental models to investigate
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the laboratory of Prof. Valérie Paradis, internationally recognized for liver pathology and human precision-cut liver slice models. The student will benefit from a highly interdisciplinary environment combining
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used in applications ranging from industrial materials processing to pumping of solid-state lasers and emerging photonic systems. However, their inherently poor beam quality and complex spatial emission
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on the ultrafast response of dielectric materials driven by intense laser fields. The central goal is to understand how strong laser excitation induces ionization, plasma formation, nonlinear optical effects, and
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, and materials science. In this PhD project, you will: § Develop an experimental platform to study 3D self-organization of active particles. § Fabricate and characterize light-driven microswimmers
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Systems - Jülich Systems Analysis (ICE-2) is the unbiased, scientific investigation of technologies, technology paths, value chains and market ramp-ups in future energy systems, considering material
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into mutually interfering coherent wavefronts, enabling the recording of color holograms using natural light sources such as sunlight and indoor lighting. This technology would allow for plenoptic 3D
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dementias • Glial biology and remyelination, including androgen receptor-mediated repair • Advanced imaging and experimental models, including high-resolution two-photon imaging, mini-2P systems, and
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outreach. Sverre Galgum/INN via Unsplash Sverre Galgum/INN About the project Forests cover 40% of Norway’s mainland and provide multiple important services such as raw materials for industry, habitats
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a mastication study with human participants and develop new approaches to simulating bolus structures in the laboratory. You will then use established digestion models to study nutrient release from