35 developer-"https:" "https:" "https:" "Robert Gordon University" Postdoctoral positions at University of London
Sort by
Refine Your Search
-
comprehensive range of personal and professional development opportunities. In addition, we offer a range of work life balance and family friendly, inclusive employment policies, campus facilities and flexible
-
Trust-funded project on Plasma-Assisted Combustion (PAC) Modelling of Ammonia, in collaboration with the York Plasma Institute. The successful candidate will develop and apply advanced computational
-
, developing ethics applications, collecting qualitative data, and disseminating findings. You will also support regular meetings with the wider research team, CRUK and our advisory panel, as well as ongoing PPI
-
will develop and apply computational methods for the analysis of cell-free DNA (cfDNA) sequencing data, supporting a growing research program at the intersection of epigenomics and translational medicine
-
decolonial approaches. The role is designed for a motivated early career researcher who is keen to develop intellectually ambitious research while gaining experience beyond the traditional academic environment
-
, access to a generous pension scheme, 30 days’ leave per annum (pro-rata for part-time/fixed-term), a season ticket loan scheme and access to a comprehensive range of personal and professional development
-
About the Role You will contribute to the construction and quality control of the ATLAS Inner Tracker (ITk). The ITk group at Queen Mary University of London has played a key role in the development
-
are committed to mentoring, scientific growth, and helping researchers achieve their career ambitions. Impact: Your work will directly contribute to developing therapeutic strategies for rare insulin receptor
-
to develop their scientific career and have an impact in the cell invasion and cancer fields. More information about our research can be found here: www.bci.qmul.ac.uk/staff/dr-pedro-monteiro About You Our
-
on the development, validation and use of organ-chip models. We are particularly focused on the development and use of joint-on-a-chip models including synovium, bone, cartilage, fat along with inflammatory components