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Field
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the goal to obtain more in-depth process understanding and develop automated control strategies for single cell microbial suspension cultures. Currently, the team is working on liquid- and gas-phase
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Biosciences, ETH Zurich develops experimental methods for measuring and controlling electronic dynamics in molecules on attosecond time scales, during chemical reactions and in the liquid phase. Project
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the Faculty Statistician, including: Longitudinal & repeated-measures studies (e.g., linear/nonlinear mixed-effects models, GEE, repeated-measures ANOVA) Survival & time-to-event analyses (e.g., Cox
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(GWS) that allow for fine dispersion control in high power laser resonators or more generally high power laser applications. A GWS consist of a dielectric multilayer planar waveguide structure with a
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., R, Python, Julia), preferably including scientific software development. Knowledge of ecological statistics (frequentist and/or Bayesian), particularly spatial statistics and nonlinear models
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parameters, digital twins, as well as complex nonlinear problems where AI-based methods such as deep learning are used to obtain better predictions. Connections to machine learning methods are primarily
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such boards through our spin-off OpticsFoundry . Join us to push this technology to the next level in a collaboration with the Nonlinear Nanophotonics group of UTwente. You will expand our robotic
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National Aeronautics and Space Administration (NASA) | Pasadena, California | United States | 7 days ago
Quantum Sensing initiatives. By shifting entanglement generation to an integrated nonlinear platform, we can achieve unprecedented levels of stability and scalability. This technology is a critical enabler
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cases in strong-field THz and X-ray science at FXE and other instruments. In particular, the THz-driven control of magnetic solids and the THz-induced molecular orientational ordering in liquids
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Materials) at ETH Zurich applies advanced ultrafast laser spectroscopy from the Terahertz to the ultraviolet spectral range to discover, control and understand novel quantum phenomena in condensed-matter