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will be expected to work collaboratively with the Plant Ecology Group (at ETH Zürich) and an international team of collaborators to address this topic. Specifically, the PhD candidate will conduct: Field
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emphasis on X-ray Absorption Spectroscopy (XAS), X-ray total scattering with pair distribution function analysis, and vibrational spectroscopy These techniques will be used to probe local coordination
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, dynamic dispersion, and periodically modulated wave propagation in guided THz systems Work closely with experimental collaborators to validate theoretical predictions through ultrafast THz pump–probe
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algebra, geometry, or topology. Successful candidates should demonstrate an outstanding research record and a proven ability to direct research work of highest quality. Willingness to participate in
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Economic Institute at ETH Zürich. Our work sits at the intersection of economic research and AI: we study money systems and democracies, and we build AI systems that engage with these domains — for research
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In NCCR CLIM+, storylines are used to work inter- and transdisciplinarily to develop (adaptation and mitigation) solutions to changes in climate extremes. While individual storylines target
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project partner, you will quickly establish contacts to industry. In our young team you will work at the forefront of today's knowledge in industrial AI/ML.
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We offer you Thrive in an inspiring, international research environment with cutting-edge infrastructure, where your work will directly impact the future of quantum technologies. Enjoy excellent
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optical characterization of TFLN photonic circuits for applications in nonlinear optics, quantum communications and quantum sensing. The open positions will work on (1) TFLN circuits for quantum networks
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networks. Job description The selected candidate will work on the furhter development of spectral submanifold (SSM) methods, aiming to further develop concepts in nonlinear model reduction Possible research