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development of wireless activation and communication systems enabling safe, efficient, and selective control of neurobots. Your work will focus on wireless energy transfer, external transmitter/receiver systems
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research environment with international collaboration No teaching duties Generous annual leave entitlement Training and career development support Pension Scheme with generous employer contribution Various
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challenges and wish to develop your scientific skills, we would like to hear from you. Applicants should have outstanding organisation and communication skills, and work well as part of a team. The Cambridge
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will help coordinate the work across the SLP’s Business Law Group, contribute to ongoing projects and develop new ones, and be capable of working independently and as part of a multidisciplinary team
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. Developed at the University of Cambridge, Tessera enables highly efficient extraction of temporal patterns from Earth observation data, which we aim to use to track recent changes in landscapes managed
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climate forecasting. The aim of the project is to develop innovative solutions to better understand and correct the SNP, improving climate predictions for the Euro-Atlantic region and beyond. Applicants
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the development of novel fluorination methods for the preparation of fluorinated molecules of strategic importance using readily available feedstock and cost-effective sources of fluoride including
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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
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grant TWISST: Terahertz wave induced spin switching technology. TWISST aims to develop the scientific understanding needed to create a new generation of magnetic memory-devices characterised by very low
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funded by UKRI and is fixed-term to 31 December 2026. This is an on-site position only. The project aims to develop a computational model for biodegradable polymers degrading in water under mechanical