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and networking platform to support the development and application of Earth system, weather, and climate modeling, data infrastructure, and impact research. Project background There is an ever
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The aim of Spark is to fund the rapid testing or development of novel and unconventional scientific approaches, methods, theories, standards, ideas for applications, etc. It is designed
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Systems, an ETH Zurich spin-off, developing high-precision force-torque sensors that give robots a refined sense of touch. Bota Systems sensors are accelerating Robotic AI research by providing the accurate
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of this research sub-project is to develop and apply advanced, patient-specific models of the knee joint fo design iteration and optimisation. Specific duties: Develop and apply a finite element model of a knee
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links to the ETH AI Center and the Reliability and Risk Engineering Lab . Job description Collaborate with other researchers to develop high-fidelity emulators for large-scale, energy system optimization
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-quantitative methods for decision support for sustainable innovation. Your tasks With the PhD work, we plan to adapt and advance the SSbD framework in the area of green electronics, with a special focus on bio
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At ETH Zurich, in close collaboration with the spin-off optohive, we are developing a new generation of functional near-infrared spectroscopy (fNIRS) technology to enable fast, wearable brain
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off-site and on-site robotic additive manufacturing process for sustainable, low-carbon construction.To support the commercialization and technical development of this technology, we are looking for a
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research environment and to contribute actively to teaching activities Workplace Workplace We offer Training opportunities Perspectives for career development Support programmes (e.g. mentoring) and networks
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vision with technical expertise in hardware and software development. We investigate these questions on a number of real-world robots such as the Unitree G1 humanoid, Stretch 3, and drones. For details