Sort by
Refine Your Search
-
platform in the field of testing composite materials for in-situ testing in conditions relevant to the energy sector (high pressure, high temperature, extreme environments). Participate in the generation
-
to apply Website https://apply.interfolio.com/193097 Requirements Research FieldChemistry » Physical chemistryEducation LevelPhD or equivalent Research FieldEngineering » Materials engineeringEducation
-
with a strong background in experimental mechanics, composite materials, structural engineering, or a related field. Experience in mechanical testing, experimental characterization, and non-destructive
-
in the downhole. Characterize the Alloy for understanding the sealing mechanism. Test the alloy at rigorous conditions like high temperatures close to 200-300 °C. Field implementation: the prepared
-
are curious, collaborative, and eager to make a difference at the intersection of marine ecosystems and human health. Expectations The successful candidate will: Examine the variability in nutrient content
-
experience working with FPGA-based networking platforms/frameworks such as NetFPGA, Corundum, Xilinx OpenNIC, or the ETHZ HLS TCP/IP Stack. Familiarity with Software Defined Networking, SmartNICs, RDMA is an
-
analytical many-body methods, field theory, and/or numerical techniques is a plus. Details: For salary and program details see KFUPM’s Postdoctoral Research Fellowship Program page (link below). https
-
expertise in testing interfaces at the low scale with applications to the energy sector, such as photovoltaic and/or piping systems. Responsibilities: Develop innovative in-situ testing facilities
-
of lithium-ion and next-generation batteries using ARC, DSC, overcharge, and mechanical abuse testing. · Develop and validate electrochemical-thermal-mechanical models to simulate battery behavior under normal
-
https://stochastic_numerics.kaust.edu.sa/Pages/Home.aspx