Sort by
Refine Your Search
-
. Research activities will evaluate how belowground plant traits and soil properties vary across inundation and salinity gradients in Gulf Coast wetlands. Potential areas of focus include belowground root
-
) to work on the Terrestrial Ecosystem Science Scientific Focus Area (TES SFA). The successful candidate will contribute to the development and evaluation of the Energy Exascale Earth System Model's land
-
characteristics and system-level requirements, and their suitability for scientific applications. The candidate will develop modeling and simulation capabilities to quantitatively evaluate quantum, classical, and
-
) to work on the Terrestrial Ecosystem Science Scientific Focus Area (TES SFA). The successful candidate will contribute to the development and evaluation of the Energy Exascale Earth System Model's land
-
AI, autonomous experimentation, scientific agents, and scalable AI workflows for heterogeneous high-performance computing environments. The successful candidate will design, implement, and evaluate AI
-
, including some or all the following: steady-state and depletion core analysis, fuel cycle analysis and evaluations, research reactor design and analysis, characterization of isotopic content of nuclear
-
at comparable sample illumination and acquisition time, progressing from reference samples to biological specimens. Collaborate with biology teams to image cells and tissues while evaluating sample integrity and
-
, OpenMC, MCNP, Serpent, MOOSE) to support the design and development of next generation nuclear reactors. Develop and analyze fuel cycle models using Cyclus to evaluate advanced fuel cycle strategies
-
planning principles and frameworks that can be applied to various urban environments. Monitor and evaluate multi-energy-system integration solutions to ensure they comply with regulations and standards
-
quantification of radioactive complexes. As a member of our research team, you will take a leading role in the design, synthesis, characterization, and evaluation of novel chelation platforms for medically