65 structures "https:" "https:" "https:" "https:" "https:" "https:" "Birmingham Newman University" positions at ETH Zurich
Sort by
Refine Your Search
-
beneficial Required people skills Highly self-organized and structured way of working and solution orientation High motivation and willingness to learn new skills High level of teamwork, positive work attitude
-
-organized and structured working style with strong problem-solving ability High motivation and willingness to learn new skills Team-oriented mindset with a positive attitude and creativity Ability to work
-
of key novel optical components. The primary objective of the PhD is to actively participate in the instrument construction phase, leading the design and manufacturing of key subsystems, and contributing
-
programming skills (ideally Python) and commitment to clear, reproducible, well-structured code Working knowledge of SQL and/or NoSQL databases (and motivation to deepen your expertise) Strong analytical
-
experience is a plus but not required Interest in biophysics, developmental biology, or cell signaling (no prior experience required) Independent, proactive, and structured work style Master’s students
-
driven by curiosity about the physical mechanisms that underlie failure and by the ambition to translate this understanding into more reliable and resilient materials and structures. By combining numerical
-
structures. By combining numerical modeling, laboratory experiments, and theoretical analyses, we seek to link microscopic processes with the macroscopic behavior of both engineering and natural systems and
-
the geological structures and potential reservoir Integrating extensive passive seismic recordings and borehole seismic data (including vertical seismic profiling, VSP) into the imaging and characterisation
-
opportunity to work with leading experts across Europe to design and deliver sustainable meta-materials for vibration mitigation, self-aware meta-components and carbon-efficient meta-structures
-
driven by curiosity about the physical mechanisms that underlie failure and by the ambition to translate this understanding into more reliable and resilient materials and structures. By combining numerical