Sort by
Refine Your Search
-
Category
-
Country
-
Employer
- AALTO UNIVERSITY
- CNRS
- Empa
- Monash University
- Eindhoven University of Technology (TU/e)
- Linköping University
- University of Amsterdam (UvA)
- University of Exeter
- ARCNL
- HFML-FELIX
- ICN2
- NTNU - Norwegian University of Science and Technology
- University of A Coruña
- University of Birmingham
- Delft University of Technology (TU Delft)
- European Magnetism Association EMA
- Heidelberg University
- KU LEUVEN
- Nanyang Technological University
- National Institute for Materials Science (NIMS)
- Norwegian Institute of Bioeconomy Research
- Paul Scherrer Institut Villigen
- Royal Netherlands Academy of Arts and Sciences (KNAW)
- Swansea University
- TU Wien
- Technical University Of Denmark
- Technische Universitaet Dresden
- The University of Iowa
- The University of Manchester
- Umeå University
- Universitat Politècnica de Catalunya (UPC)- BarcelonaTECH
- University of Basel
- University of Bremen
- University of North Texas at Dallas
- University of Nottingham
- University of Pittsburgh
- University of Twente (UT)
- University of Warwick;
- Vrije Universiteit Brussel
- 29 more »
- « less
-
Field
-
for molecular systems and thin films in combination with AI-driven process optimization. Help us shape the future of chemical research! Self-driving lab platform for photochemical and porosity research Join a
-
. Adapt to GNNs the interpretability tools created for large language models, such as sparse autoencoders, to locate the variables that the network represents internally in nodes and edges. Design causal
-
through chiral molecules, self-assembled monolayers, and chiral thin films. Develop and apply surface- and interface-sensitive measurements relevant to CISS, which may include magnetoresistance and spin
-
to the properties of live sensor data: sparse, unevenly sampled, motion-distorted and partially observed Implement and evaluate the resulting systems on embedded hardware and on NIBIO's robot platforms Professional
-
cooperation with FMI, where E-sail was invented, and 4 companies. E-sail is a highly innovative and potentially disruptive propellantless propulsion system. An operational E-sail consists of hair-thin and
-
gating. The research will explore how the properties of atomically thin materials can be transformed when different two-dimensional crystals are brought together, creating artificial quantum systems with
-
containing CO2-negative SCMs, bio-based self-healing, hybrid fiber architecture, Fe-SMA-based self-prestressing, and integrated structural health monitoring into one coherent system for thin, durable
-
engineering in a unique way. The Atomic Scale Processing group (Prof. Miika Mattinen) in the Department of Chemistry and Materials Science (CMAT), is now looking for: Doctoral researcher (PhD student) in thin
-
-based self-healing, hybrid fiber architecture, Fe-SMA-based self-prestressing, and integrated structural health monitoring into one coherent system for thin, durable structural interventions. It can be
-
, sensor lifetime and retention lifetime. Understanding and sequencing these lifetimes is crucial to the success of the project. You will gain experience in cleanroom microfabrication, thin-film patterning