Sort by
Refine Your Search
-
Listed
-
Category
-
Country
-
Employer
- NTNU - Norwegian University of Science and Technology
- University of Warwick
- Delft University of Technology (TU Delft)
- Eindhoven University of Technology (TU/e)
- FCiências.ID
- Maastricht University (UM)
- University of Amsterdam (UvA)
- Aalborg University
- CNRS
- Institute of Genetics and Animal Biotechnology of the Polish Academy of Sciences (formerly Institute of Genetics and Animal Biotechnology PAS)
- Instituto de Engenharia Mecânica
- Medical University of Silesia
- NTNU Norwegian University of Science and Technology
- National Research Council Canada
- Newcastle University
- Technical University of Munich
- Universidade de Coimbra
- University of East Anglia
- University of North Texas at Dallas
- ;
- Adam Mickiewicz University
- CMU Portugal Program - FCT
- Centre Internacional de Mètodes Numèrics en la Enginyeria
- Constructor Knowledge Labs gGmbH
- Durham University
- FEUP
- Faculdade de Ciências e Tecnologia
- Fondazione Bruno Kessler
- Heidelberg University
- Heinrich Heine University Düsseldorf •
- Heriot Watt University
- Imperial College London
- Instituto de Ciência e Inovação em Engenharia Mecânica e Engenharia Industrial
- Julius-Maximilians-Universität Würzburg •
- KU LEUVEN
- Luleå University of Technology
- MUR
- Monash University
- Nord University
- Rutgers University
- Stony Brook University
- The University of Edinburgh
- UWE, Bristol
- University of A Coruña
- University of Antwerp
- University of Bergen
- University of Birmingham
- University of Essex;
- University of Exeter
- University of Luxembourg
- University of Minho
- University of Twente (UT)
- University of Warwick;
- University of Würzburg - Rudolf Virchow Center for Integrative and Translational Bioimaging
- Uppsala universitet
- 45 more »
- « less
-
Field
-
they can propagate and cause system failures. Hence, the design process must characterize the likelihood and severity of faults, identify the set of possible hazards and failure conditions, mitigate possible
-
approaches. Calibration and validation of computational models using experimental data. Development of predictive methodologies for tool lifetime assessment and failure prediction. Application of machine
-
Lithium plating is among the most hazardous failure mechanisms affecting lithium-ion batteries under aggressive cycling conditions. It often initiates silently, yet can lead to catastrophic outcomes
-
cell failure and its implications for system-level battery design. By creating a new scientifically robust framework to assess and mitigate thermal runaway, this PhD project will develop a unique
-
to international scientific conferences and to industry partners (Airbus). Your work will focus on developing integrated computational tools for structural wing design, linking advanced failure models, uncertainty
-
project aims to address this gap through the development of a rigorous empirical framework for evaluating the security robustness, failure modes, and operational risks of AI decision engines in cyber
-
Model over that pipeline — a model that does not just generate code, but predicts the consequences of an architectural decision: total cost of ownership, unintended side effects, latency and failure
-
boundaries. Position The offered position contributes to the failure resilience of cellular networks through technological innovations, to ensure connectivity and service continuity for both the general public
-
ejection fraction and contribute to the assessment of conditions including heart failure and valvular heart disease. At present, cardiac volumes are predominantly assessed using imaging techniques such as
-
Fisher & Paykel, delivers heated, humidified oxygen to patients at flow rates above 20 L/min and has become the first-line treatment for acute respiratory failure worldwide [1]. This project will develop