Sort by
Refine Your Search
-
Listed
-
Employer
-
Field
-
the physics of synthetic frequency lattices in fast-gain lasers. Job description Develop simulation frameworks for frequency lattices, mapping the interplay of RF modulation, gain recovery, and nonlinear
-
of systems. We develop methods to advance sustainable energy and chemical process systems from the molecular to the scale of the systems. Our work combines process analysis and system modeling to design
-
regimes of coherence and coupling in chip-scale frequency combs. Working, teaching and research at ETH Zurich We value diversityIn line with our values , ETH Zurich encourages an inclusive culture. We
-
well as to develop radically new therapies for eye diseases. These therapies are urgently needed, since the prevalence of visual diseases is rising globally, and effective therapies are lacking for most of them. As
-
Working, teaching and research at ETH Zurich We value diversityIn line with our values , ETH Zurich encourages an inclusive culture. We promote equality of opportunity, value diversity and nurture a working
-
-thinking approach to your work, while enjoying the challenge of learning and mastering new tasks? Are you creative, curious, and motivated to optimize, develop, and implement new ideas? If so, you are
-
project meetings and participate in some teaching activities at ETH Zurich. Profile Project A: You have a MSc degree in environmental chemistry, geochemistry, environmental sciences or a related field, with
-
will develop and apply advanced methodologies, including scenario analysis and the innovative use of satellite data, to model the exposure and vulnerability of companies to climate-related hazards (e.g
-
, workshops, and international conferences. Interact actively and fruitfully with other researchers, in Basel as well as from other institutions. Contribute to teaching activities at the Department with one
-
alcohols The Laboratory of Energy Science and Engineering is looking for a candidate to fill a PhD position to develop catalysts for the conversion of CO2 into higher alcohols. At LESE, we aim to advance