32 parallel-processing-bioinformatics Fellowship positions at UNIVERSITY OF SOUTHAMPTON
Sort by
Refine Your Search
-
either photonic structures or optoelectronic device fabrication and characterisation. Strong experimental skills in at least one of: nanofabrication, electronics, materials development and processing
-
, materials development and processing, or thin-film characterisation. Ability to work collaboratively within interdisciplinary research teams. Good communication and interpersonal skills. Desirable
-
including anechoic chambers and controlled experimental environments, ensuring high-quality, repeatable data. Develop and apply signal processing workflows for weak transient signals, long-term monitoring
-
be considered as part of the recruitment process. For further information including key benefits designed to help maintain and support employees' well-being and work-life balance, please see our
-
that applicants may seek flexible working patterns which will be considered as part of the recruitment process. For further information including key benefits designed to help maintain and support employees' well
-
materials developed within the EXPRESS programme. You will design and implement fabrication process flows within a cleanroom environment, including thin film deposition, lithography, mask design and etching
-
balance in the workplace. The Faculty recognises that applicants may seek flexible working patterns which will be considered as part of the recruitment process. please see our working with us website page
-
application of innovative Machine Learning (ML) frameworks to understand and predict the global hydrological cycle. The role will require bridging the gap between process-based physical modeling and scalable
-
methods. It may also include quantitative data analysis. The post-holder will take a role in all stages of this process, from conceptualisation to data collection and analysis, as well as writing up and
-
toward IgG substrates. Computational insights will guide the design of chimeric glycosyltransferases that incorporate Fc-binding domains to achieve proximity-driven enhancement of glycan processing