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. This interdisciplinary approach relies on the complementary expertise of S. Giordano (IEMN), who will develop a multiscale mathematical model of the multicellular system, and F. Anquez (PhLAM), who will lead the imaging
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conformations. This structural flexibility is closely linked to their biological function but also makes them particularly challenging to study and model. The objective of this PhD project is to develop novel
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throughout the Ph.D. project. In addition to exciting tasks and the collaborative working atmosphere at Jülich, we have a lot more to offer: https://www.fz-juelich.de/en/careers/julich-as-an-employer/benefits
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facilities. Close collabo-ration with partners in the Taranis consortium is planned. Required Profile : - Education: Master's degree or engineering degree in plasma physics or fusion phys-ics - Technical
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FEMTO-ST Institute/AS2M (https://www.femto-st.fr/en) | Ons en Bray, Picardie | France | 3 months ago
23 Jun 2026 Job Information Organisation/Company FEMTO-ST Institute/AS2M (https://www.femto-st.fr/en) Research Field Engineering Technology Physics Researcher Profile First Stage Researcher (R1
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advanced microscopy, immunostaining, and functional biological assays. Depending on project progress, the PhD may include an international research stay at McMaster University to develop and characterize
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–Science research-creation project bringing together engineering, life sciences and design. This interdisciplinary framework will enable the candidate to develop innovative experimental models while engaging
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Inria, the French national research institute for the digital sciences | Talence, Aquitaine | France | about 2 months ago
. The goal is to develop a novel integrated quadruped design, by adopting a whole-body co-design approach, jointly optimizing mechanical architecture, actuation systems, and control policy. The thesis will be
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operating currents and conductors composed of multiple REBCO tapes in parallel. It is therefore necessary to develop experimental and numerical study capabilities for quench dynamics in REBCO conductors and
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team and their partners at LPENS (ENS Paris) and LPEM (ESPCI) to develop a new generation of top-down quantum photonic devices based on single-photon emitters and superconducting detectors integrated