18 structures-"https:"-"https:"-"https:"-"https:" positions at UNIVERSITY OF SOUTHAMPTON in United Kingdom
Sort by
Refine Your Search
-
-of-the-art structural modelling and computational protein design approaches to understand and engineer enzymes that modify IgG Fc N-linked glycans. The successful candidate will use tools such as AlphaFold
-
airborne acoustics, air-coupled ultrasonics, structural vibration/waves. Work in specialist facilities including anechoic chambers and controlled experimental environments, ensuring high-quality, repeatable
-
tissues and (where relevant) soil. The modelling work will be tightly coupled to experimental campaigns and will use image-derived structures (including XCT images where available) to develop mechanistic
-
–dielectric–metal resonator platforms. The project develops hyperuniform disordered metasurfaces, a novel class of photonic structures in which structural correlations are precisely controlled to achieve
-
network–Training & Research in Advanced Dispersion Engineered grating-waveguide Structures (TRADES)–and push the boundaries of what’s possible with nanofabrication technology. Nanofabrication covers ground
-
concerning data capture, structure and presentation, and a range of services that allow content to be accessed in a variety of ways. We support our many customers by maintaining our own Linux based virtual
-
the mentorship of leading experts in one of the following priority research areas: Research area 1: Intelligent Structural Optimization using Physics-Informed Reinforcement Learning Research area 2: AI-Enhanced
-
network–Training & Research in Advanced Dispersion Engineered grating-waveguide Structures (TRADES)–and push the boundaries of what’s possible with nanofabrication technology. Nanofabrication covers ground
-
variables from medical records into structured formats aligned to the protocol and data dictionaries. Curate, validate and reconcile clinical data with laboratory/biomarker and study datasets; resolve data
-
Grant “Unwrapping topologically protected light on topologically structured surfaces”. Building on the University of Southampton’s long-established and internationally recognised strength in metasurface