Sort by
Refine Your Search
-
Listed
-
Category
-
Country
-
Employer
- Purdue University
- University of Utah
- Utrecht University
- CNRS
- NTNU - Norwegian University of Science and Technology
- The University of Chicago
- University of Kentucky
- University of North Carolina at Chapel Hill
- Curtin University
- Duke University
- Forschungszentrum Jülich
- George Mason University
- Harvard University
- Inria, the French national research institute for the digital sciences
- Oak Ridge National Laboratory
- Technical University Of Denmark
- Technical University of Denmark
- The Norwegian School of Sport Sciences
- The University of Arizona
- Universitat de Barcelona
- University of Alabama at Birmingham
- University of Florida
- University of Foggia
- University of Maryland, Baltimore
- University of Minho
- University of Washington
- Wageningen University & Research
- 17 more »
- « less
-
Field
-
and optimize novel catalysts, conduct materials characterization and catalytic testing, analyze reaction mechanisms, prepare technical reports, publish high-impact journal articles, develop
-
of electron-transparent TEM lamellae and specimens Operation and optimization of ultrafast laser systems (fs–ps range) and optical setups Characterization of electrostatic potentials and excited carrier
-
(bbγγ) channels. In the classical HH(bbγγ) analysis, the H(γγ) channel is treated as a major background process for the di-Higgs channel. A joint analysis of both modes would optimize the overall
-
chemistry, and materials science. The successful candidate will lead the optimization of this printing platform, characterize the fundamental reaction kinetics, and validate its translation into high-impact
-
generating mechanistic insights that can inform future clinical strategies to optimize MN status in critically ill patients. Your main tasks and responsibilities in this project are: • Isolating PBMCs from
-
towards this requirement. Technical Skills or Knowledge: Proficiency in Python and other related software, such as MATLAB, R, Julia, SQL, and data analysis/optimization libraries. Preferred Competencies
-
, including BLDC, PMSM, AC, DC, and induction motors. Strong understanding of electromagnetic theory, motor operating principles, and electrical motor design. Experience with optimization techniques
-
, astrocytes, and even microglia. Building on this work, we seek to harness the power of this new tool to optimize its therapeutic use for a wide variety of conditions including epilepsy, neuropsychiatric
-
a translational research program focused on the development and optimization of image-guided intra-arterial (IA) drug and cell delivery to the central nervous system, with applications spanning
-
influenced by optimal training and technique in both a sport and health perspective as well as in rehabilitation of patients. The department's activities take place in "state of the art" laboratories, equipped