10 optimization-nonlinear-functions Fellowship positions at King Abdullah University of Science and Technology
-
, https://www.nature.com/articles/s41586-024-07808-z ). Building on this work, this project aims to further expand our understanding of wheat domestication history and evolution by generating and analyzing
-
. The candidate will work in a transdisciplinary environment to develop a nanofiber acoustic sensor platform, identify best suited nanomaterials, fabricate and characterize the nanofibers, build and characterize
-
facilities, including a supercomputer. You will work in an exciting international environment with researchers from over 100 nationalities and will have the opportunity to participate in the development
-
, encompassing organic and polymer chemistry, membrane science and engineering, and electrochemistry and electrochemical engineering. Drawing on these complementary specialisms, we focus on the function-led design
-
to Single Cell Analytics. The Living Systems Laboratory (livingsystems.kaust.edu.sa) offers an excellent interdisciplinary environment where experimentalists work closely with computational experts utilizing
-
fractures can play a key role on production performance. One of the persisting challenges is to create complex 3D fracture networks and solve multiphase flow efficiently. None of the existing tools can
-
Prof. Suzana Nunes at KAUST has open positions for highly qualified postdoc candidates to work in polymeric membrane development from lab to semi-technical scale to start in April 2021. Information
-
generous benefits. The candidate will collaborate with a multidisciplinary team at KAUST and KAU. The successful applicant will become a part of the Ali I. Al-Naimi Petroleum Engineering Research Center
-
, please contact pwonka@gmail.com or upload an application. As a KAUST postdoc or researcher, you will have access to state-of-the-art research facilities. You will work in an exciting international
-
, programming, and connecting accelerators to enhance performance, latency, and efficiency in emerging applications. Our current projects are exploring hardware acceleration in smart NICs, application-specific