Sort by
Refine Your Search
-
Country
-
Employer
- Oak Ridge National Laboratory
- National Energy Technology Laboratory (NETL)
- University of Oxford
- University of Twente (UT)
- Aalborg University
- Istituto Italiano di Tecnologia
- Karolinska Institutet (KI)
- King Abdullah University of Science and Technology
- National Aeronautics and Space Administration (NASA)
- Pennsylvania State University
- Rutgers University
- The Ohio State University
- University of Twente
- 3 more »
- « less
-
Field
-
will engage in multiscale modeling and machine learning to develop reliable, efficient framework for predicting long-term creep and fatigue behaviors of heat-resistant structural alloys considering
-
National Aeronautics and Space Administration (NASA) | Hampton, Virginia | United States | 13 days ago
characterization data to predictions of mechanical behavior, damage evolution, and fatigue performance in these materials. Quantitative validation of these computational tools is of particular interest to support
-
and test the propensity for nucleating cracks in laboratory experiments. You will be responsible for the design and performance of fretting fatigue, plain fatigue and wear tests using bespoke servo
-
combined mHealth-telehealth symptom cluster (sleep, worry-anxiety, fatigue, depression) intervention for people with advanced cancer (1R01CA281885-04A1). This study will also examine the effectiveness
-
of the Principal Investigator, the Postdoctoral Associate will primarily investigate how long-term exposure to outdoor air pollution affects survival, health-related quality of life, fatigue, sleep, systemic
-
integrates athletes’ subjective experiences (such as perceived exertion, motivation, enjoyment and fatigue) with objective physiological and biomechanical data. ASPIRE is a collaboration between the University
-
commercial (e.g. Abaqus, ANSYS, etc.) and/or open-source finite element (FE) codes (e.g., MOOSE, DAMASK, etc.) is required. Experience with microstructural modeling (e.g. crystal plasticity) applied to fatigue
-
modeling for fatigue and fatigability quantifications to guide personalized therapy in multiple sclerosis” project (CUP J53C26000950007, contract n. 121/26/F14). Please submit your application using
-
testing (tension, compression, fatigue, creep, nanoindentation) and in situ neutron or synchrotron diffraction techniques. Background in advanced structural alloys, including high-entropy alloys
-
, to investigate dislocation core structures, dislocation mobility, and dislocation-driven mechanical behavior such as tension, compression, creep, and fatigue as functions of compositions, temperature, stress, time