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An exciting opportunity has a risen within the E.P.S.R.C. Centre of Doctoral Training (CDT) in Digital and Automated Materials Chemistry to support the effective operation of the centre. The goal
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matrix composite cladding material concepts for ATFs (accident tolerant fuels) by highly innovative material tailoring. You will undertake numerical modelling work to simulate damage propagation in
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mechanisms, while at the macro scale, the engineering issue is to develop an efficient system for integrating these metamaterials with several engineering applications. Metamaterials derive their properties
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Science and Techology (iCASE), with sponsorship from BAE Systems Ltd. Waste heat surrounds us; from car exhausts to fridges, and even yourself. This otherwise untapped energy source can be harnessed
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of imaging technology for material characterisation. The Faculty of Engineering provides a thriving working environment for all PGRs creating a strong sense of community across research disciplines. Community
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will carry out experiments on the deposition of novel photovoltaic absorber materials, and the fabrication and testing of perovskite solar cells. The role is expected to require synthesis of precursor
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of the Inorganic Chemistry Section. The post-holder will develop and deliver material for the for the new Oxford/EPSRC Centre for Doctoral Training in Inorganic Materials for Advanced Manufacturing (IMAT); Home
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will carry out experiments on the deposition of novel photovoltaic absorber materials, and the fabrication and testing of perovskite solar cells. The role is expected to require synthesis of precursor
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PhD Supervisor: Sajjad Taravati Supervisory Team: Dr. Sajjad Taravati and Prof. Jize Yan Project description: Project Overview: Join the Smart Electronic Materials and Systems research group
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Energy materials strategy of the university. Nuclear Science and Engineering is crucial to the University of Bristol’s global research pillar on tackling climate change, and is a key area of investment and