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their suitability, novel substrates and materials which can be combined with existing laboratory techniques. Ideally research would identify/develop substrates that can simulate the physical properties
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, or shortly expect to obtain, a PhD in Physics, Electronic Engineering or a related discipline. Experience is required in MBE growth , semiconductor characterisation and device fabrication in a
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biomechanical models currently used to study HSI: the single-degree-of-freedom (SDoF) system and the moving inverted pendulum model (IPM). This PhD project will systematically analyse the reliability of these two
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see: https://gtr.ukri.org/projects?ref=MR%2FX009580%2F1 . Applicants should have a PhD or equivalent professional qualifications and experience in biological, chemical, or physical sciences and previous
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the programme code: 8856F. Leave the ‘Research Area’ field blank. Select ‘PhD in Process Industries; Net Zero (PINZ’) as the programme of study. You will then need to provide the following information in
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students. Essential selection criteria • A doctoral degree (PhD or DPhil) in chemistry, physics, engineering or other relevant discipline. Post-qualification research experience (Grade 8
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the accelerator neutrino group includes the Micro Boone, SBND and DUNE experiments. A University degree (or close to completing) at PhD level in particle physics or a closely related discipline is essential
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of the neurobiological mechanisms regulating physical activity, energy expenditure and food intake is essential to successful prevention and treatment of obesity and associated conditions. The brain represents the master
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, Commonwealth and Development Office (FCDO) and the National Physical Laboratory (NPL). The researchers can also spend time on site at NPL and be part of the wider collaborative network between NPL, University
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programme type (Research), 2023/24, Faculty of Physical Sciences and Engineering, next page select “PhD Engineering & Environment (Full time)”. In Section 2 of the application form you should insert the name