127 postdoc-in-thermal-network-of-the-physical-building Postdoctoral positions at University of Oxford
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depending on funding. The Oxford Ion Trap Quantum Computing group currently hosts one of the world’s highest performance networked quantum computing demonstrators, capable of remote Bell-pair production
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DPhil students, manage data analysis pipelines, and contribute to publications and grant writing. This post is ideally suited to someone aiming to secure a long-term fellowship and build an independent
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-established data resources accessed within a secure Trusted Research Environment for large-scale analysis. This role offers excellent opportunities to engage with a broad network of collaborators including
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are governed by the specific intermolecular interactions responsible for stabilising the chains. This presents an exciting opportunity to demonstrate how fundamental principles from physical chemistry have been
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be based in the Kavli Institute for Nanoscience Discovery, New Biochemistry Building, Oxford and is available immediately. Application Process Applications for this vacancy are to be made online and
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proposals and results, and represent the research network at meetings. Diversity Committed to equality and valuing diversity Our active Psychiatry People and Culture teams and initiatives work to make
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of the research group, including postdocs, research assistants, technicians, PhD and project students, as well as to represent the PI and ISML when required. You will hold a Masters or PhD degree (or be close to
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within this framework, building networks with national and international museum professionals, publishing articles, and will participate in ongoing research and public engagement projects. You must possess
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at the plasma membrane. The lab undertakes a multidisciplinary approach spanning biochemistry/biophysics, cell biology and structural biology to address our research questions. In this role you will build on our
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it relates to the laser process parameters. Specifically, you will carry out high resolution Raman imaging on laser written polymer networks with liquid crystal resins. Additionally, you will develop