132 postdoc-computational-fluid-dynamics Postdoctoral research jobs at University of Oxford in United Kingdom
Sort by
Refine Your Search
-
focuses on understanding how tumour cell plasticity and dynamic cell state transitions drive resistance, and aims to identify actionable vulnerabilities that could inform future therapies. You will work
-
2025. Interviews will be held as soon as possible thereafter. At the Dunn School we are committed to supporting the professional and career development of our postdocs and research staff. To help them
-
calculations and Brownian Dynamics simulations. The group is looking for a highly motivated and driven postdoctoral researcher to contribute strongly to a wave of ongoing developments deploying this technology
-
vitro and cell-based approaches. In this endeavour the position is for a Postdoc with expertise in cell signalling pathways, protein biochemistry and in vitro cell biology. You will be responsible
-
. The Preston lab is highly interdisciplinary and collaborative and co-located with a dynamic cluster of research groups studying plant biology, microbiology and plant-microbe interactions. You will hold, or be
-
exciting opportunity to join the dynamic research group on Digital Ethics and Defence Technologies, contributing to pioneering work at the forefront of AI and ethics. The role focuses on innovative research
-
Colorectal Cancer - Stratification of Therapies through Adaptive Responses (CRC-STARS) programme, developing and applying cutting-edge mathematical methods to spatial transcriptomics imaging data in order to
-
About the role We have an exciting opportunity to join the dynamic research group led by Dr Jie Yang in the Department of Oncology at the University of Oxford. The group conducts research on T cell
-
of agentic behaviour and publishing high-impact research. Candidates should possess a PhD (or be near completion) in PhD in Computer Science, AI, Security, or a related field. You will have a Strong background
-
research group has shown, by contrast, that the dynamics of antigenically diverse pathogens is driven by naturally acquired immunity against epitopes of limited variability (ELV), thereby opening up