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Bring physics into world models — and make embodied agents fast, reliable and ready for the real world! Join us! World models are controllable, physics- and mechanism-grounded simulators of reality
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chemistry and physics techniques. What you will do You will work in a small team, including one or more PhD students, towards the goal of designing, analyzing and testing novel device structures that exploit
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microbiome and genome data to learn contextual representations of microbes and communities and translate them into predictive models for successful crop microbiome engineering. Your job Plant-associated
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, ensuring the agent's responses are pedagogically valid, contextually appropriate, and consistent with collaborative learning theory. Scaffolding mechanism design. In close collaboration with the PhD
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University of Amsterdam that brings together automation, flow technology, photophysics, and spectroscopy. The project aims at establishing a self-driving platform for photohemical research. You will first
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that are still far from mainstream space engineering but could become disruptive in the future. The team operates to high academic standards, publishes in peer-reviewed journals and conferences, and has built a
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, and frequency spectrum actively shape the thermal profile. Working at the interface of electrical and thermal engineering, you co-design the power stage and heating mechanism to reach extremely high
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will be a member of the Bauer group at the Bionanoscience department at TUDelft. Job requirements The applicant should hold a recent PhD in Theoretical Biophysics and an undergraduate degree in Physics
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. Job requirements We look forward to dynamic candidates that want to get their hands onto a real mission and bring a contribution to society. You also have: A PhD in engineering (aerospace engineering
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, troubleshoot and improve the setup and ensuing workflows. You have a PhD degree in chemical engineering, physical chemistry, materials science, or a closely related field. You have hands-on experience with