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100%, Zurich, fixed-term The newly established Solid-State Materials Chemistry Group at the Laboratory of Inorganic Chemistry, Department of Chemistry and Applied Biosciences (D-CHAB), ETH Zurich
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100%, Zurich, fixed-term The newly established Solid-State Materials Chemistry Group at the Laboratory of Inorganic Chemistry, Department of Chemistry and Applied Biosciences (D-CHAB), ETH Zurich
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across physics, biology, chemistry and the earth sciences. NCCR Genesis does not aim to provide answers in all fields, but to drive innovative research and achieve decisive progress. Details on NCCR
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is unclear whether such environments existed on the early Earth, and, if so, how long they prevailed. The aim of this project is to use state-of-the-art spectroscopic techniques to study the chemistry
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the interface of inorganic chemistry, condensed matter physics, and materials science may include design, synthesis, characterization and applications of solid-state inorganic materials. High-quality, single
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(biosignatures) – whether through remote sensing or direct on-site measurements – requires significant innovation. These challenges demand close collaboration across physics, biology, chemistry and the earth
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Physics, Chemistry, Materials Science, Engineering, or a closely related discipline Proven experience working in semiconductor cleanroom environments, with a solid understanding of semiconductor processing
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strong interest in applying theoretical and computational methods to fundamental problems in materials growth. A strong background in thermodynamics, kinetics, statistical mechanics, solid-state physics
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datasets. An MSc degree in geochemistry, Earth sciences, environmental chemistry, chemistry, or a closely related discipline. A strong interest or background in low-temperature geochemistry, water-rock
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100%, Zurich, fixed-term We are offering a PhD position in attosecond science and strong-field physics at the Laboratory of Physical Chemistry, ETH Zürich. The project focuses on high-order harmonic