Sort by
Refine Your Search
-
on understanding and engineering materials at the atomic scale. Using state-of-the-art electron microscopy and spectroscopy, the institute develops new experimental methods to reveal how nanoscale structures
-
, we use scalable, industry-relevant processes that ensure rapid transfer of our research results to industry. Thus, our work contributes significantly to closing the gap between basic science and
-
Systems Engineering (ICE-1), our focus is on developing models and algorithms for simulating and optimizing decentralized, integrated energy systems. These systems are characterized by the high spatial and
-
Spectroscopy with Electrons (ER-C) at Forschungszentrum Jülich is a center of excellence in advanced transmission electron microscopy and spectroscopy, addressing problems in materials science, solid-state
-
) we investigate the chemistry and transport of trace substances in the troposphere. To this end, field and simulation chamber experiments as well as model simulations are conducted. Your Job The current
-
between basic science and application. Future battery technologies are urgently needed to make electric mobility and stationary energy storage even more affordable, safer and more efficient. Si-rich anodes
-
for evaluating long-term transformation paths Your Profile Excellent master`s degree in engineering, materials science, industrial engineering, energy systems, or a comparable field of study Strong interest in