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towards deep, large-scale analyses of STM evolution and action. The focus will lie on a range of arthropods, molluscs, and chordates, with the aim to uncover universal STM design principles as
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? Join our team to develop next-generation multi-aperture ultrasound technology combining distributed sensing, adaptive acquisition, image reconstruction, and AI-driven imaging for groundbreaking clinical
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analysis? Are you inspired by applications to engineering, physics, or industrial problems? Do you thrive in a multi-disciplinary environment? Information Many of the most challenging problems in science and
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Would you be interested in exploring how multi-agent aerial manipulation can contribute to construction, in particular by assembling a pavilion? Job description Advancement of aerial robotics
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together nine demonstration sites across the Mediterranean — from the Aegean Islands and Central Greece to Sardinia, Catania-Ferla, PACA, Aragón, Alentejo, İzmir, and Nicosia — to scale up nature-based
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significant advances in the field, several key technical obstacles remain to be addressed before this technology is viable at a commercial scale. One such obstacle is the development and characterization
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well-being, accessibility, safety, and social cohesion, and translate multi-site data into comparative insights and practical tools for cities and practitioners. What you will do In this Postdoc position
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. You will work in a highly collaborative environment as part of a multi-national team of PhDs, MScs, and professional staff. We strive to create a safe environment that supports personal and professional
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effects of joint schoolyard-street transformations on community well-being, accessibility, safety, and social cohesion, and translate multi-site data into comparative insights and practical tools for cities
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and policies. Building on innovative research developed at the Erasmus Institute on Culture and Stratification, the project harnesses the advantages of in-depth qualitative and large-scale quantitative