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integrate and refine computational tools developed by the XChem Fast Forward Fragments team at Diamond Light Source, enabling rapid compound design, synthesis, and structural evaluation. You will operate
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internal and external partners, including the Diamond Light Source synchrotron, and play a valuable role in advising colleagues and contributing to the supervision of students. You will hold (or be close to
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chemistry platform that accelerates fragment progression and synthesis. You will also integrate and refine computational tools developed by the XChem Fast Forward Fragments team at Diamond Light Source
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at central facilities such as Diamond Light Source and in industry. As part of this role the post holder will work within the Energy Materials Group and contribute to writing future bids; operating within area
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Metallurgy and Materials as well as collaborators at other universities, central facilities such as Diamond Light Source and in industry. As part of this role the post holder will work within the Energy
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/ Flexible hours considered. Reference: 11789 About Us Diamond Light Source is the UK’s national synchrotron; a huge scientific facility designed to produce very intense beams of X-rays, infrared and
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MACQUARIE UNIVERSITY - SYDNEY AUSTRALIA | North Ryde, New South Wales | Australia | about 1 month ago
the Australian Genome Foundry Opportunity to collaborate with researchers at the Diamond Light Source, University of Oxford, and the University of Leeds The Role The School of Natural Sciences is currently seeking
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of 12-month extension. The John Adams Institute for Accelerator Science at the University of Oxford and Diamond Light Source Ltd. are seeking a highly qualified post-doctoral research assistant to carry
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transport and magnetization Explore electronic structure with angle-resolved photoemission spectroscopy (ARPES) at synchrotrons such as Diamond Light Source in the UK or the Advanced Light Source in the USA
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. Structural studies will be performed in the Sheffield cryoEM facility and the Diamond Light Source. Aims: 1. Establish a pipeline for ultrastructural analysis of paraspeckles using cryo-CLEM. 2. Build a