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MoSS with various diffraction methods, to develop code to automate the characterisation of MoSS with diffraction and other methods. The successful candidate will be involved in the supervision of a PhD
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a PhD in Physical Sciences or a closely related field, and you will have a background in X-ray diffraction. Knowledge of databases, crystallisation and other characterisation methods for molecular
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methods of deterministic antiferromagnetic domain control through the application of external fields that modify the underlying crystal symmetries. The postholders will be expected to display initiative and
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of the research is to address a key scientific challenge before altermagnetic materials can be exploited in technologies of the future. The challenge is to find novel methods of deterministic antiferromagnetic
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network events and undertake research placements within this project. You will have a PhD in Physical Sciences or a closely related field, and you will have a background in the modelling of molecular
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, agrochemicals, and food industries. There are multiple opportunities to collaborate, take part in network events and undertake research placements within this project. You will have a PhD in Physical Sciences
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The Role This scheme offers up to 6 months follow-on funding to EPSRC-funded research students after they have submitted their PhD. The EPSRC Postdoctoral Pathway scheme (formerly known as Doctoral
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of the grant. A postdoctoral research assistant with a completed or submitted PhD in climate change law / policy will be recruited at 80% with remote working available. (It is intended that this will leave time
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forefront of hydrogen technologies and their integration to the energy systems. The successful candidate will hold a PhD degree (or close to completion) in Mechanical/Electrical Engineering or related subject
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at Durham University. This is a unique opportunity to work at the forefront of hydrogen technologies and their integration to the energy systems. The successful candidate will hold a PhD degree (or