73 structures-"https:" "https:" "https:" "https:" "https:" "https:" "https:" "https:" "UCL" research jobs at University of Oxford
Sort by
Refine Your Search
-
quantification and mapping of the high-dimensional correlation structure across multiple traits, quantification of trait variation that arises from new mutations, development and applications of analysis methods
-
cavitation detection, imaging, and monitoring. You will be responsible for engaging in reactor design, construction, development, and characterisation. You will also be expected to integrate a cavitation
-
for 2 years You will lead and manage your own research within the project, developing and applying advanced electronic structure and molecular simulation methods. The work will involve transition-metal
-
gravitational waves. This is a joint position between the University of Oxford and Kavli Institute for the Physics and Mathematics of the Universe, University of Tokyo, structured such that the first 18 months
-
outer membrane protein biogenesis in the group of Prof Ben Berks FRS. Building on our recent work in this area (Nature (2015) 647: 479-487) you will carry out structure-function and molecular
-
band structure and exciton binding energies, as well as their vibrational and transport properties. This role will utilize several state-of-the-art computational modelling techniques, in particular
-
years This role will contribute directly to drug discovery efforts through the design and synthesis of small-molecule inhibitors. The postholder will use structural, biochemical and microbiological data
-
design, development and execution of biochemical and biophysical assays to identify and evaluate inhibitors targeting mycobacterial proteins. Working closely with chemists, structural biologists
-
We are seeking a highly motivated Research Assistant to join Professor Thomas Bowden’s group within the Division of Structural Biology. Funded by CEPI, this exciting role focuses on integrated X-ray
-
congenital heart defects and structural diversity across populations and species. In doing so, we aim to identify novel approaches to diagnose and repair structural defects of the heart wall and septa. We use