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that result from the interplay of magnetism, dimensionality, and topology. The primary experimental tools used will be neutron and Raman scattering, complemented by electron microscopy, electron energy loss
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electrophoretic analyses, stability assays, etc). Competence in standard molecular biology techniques (recombinant DNA, PCR, fluorescence microscopy,etc). Competence in data and standard statistical analyses
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has been awarded one of the prestigious ERC Synergy Grants titled SKIN2DTRONICS, which aims to develop ultra-conformable, soft and thin (skin-like) electronic implantable devices using two-dimensional
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Genomic Sciences supporting the research work of Professor Clare Davies (https://www.claredavieslab.org ) on the project which aims to understanding the significance of PRMT1-mediated methylation of an RNA
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Biological/Biomedical Sciences Computer/Information Sciences Medical - Research Internal Number: A-179992-4 General Description Laboratories in the Department of Biophysics and Biophysical Chemistry at Johns
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state-of-the-art lab methodology, comprising electron beam lithography (EBL), oxide sputtering, atomic force microscopy (AFM), and transport measurements. WORK-LIFE BALANCE: We offer flexible working
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research ranging from lattice light-sheet microscopy to CryoEM, genomics, and informatics. The role will work with PhD-level bioinformatics scientists and researchers who have single-cell RNA-seq, bulk RNA
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. Learning and application of advanced microscopy and intravital imaging techniques. The maintenance, use and teaching of research associated equipment (e.g. high-end microscopes). To assist team members in
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and has played an important role in the development of many new techniques, most notably protein crystallography, cryo-electron microscopy, DNA sequencing and monoclonal antibodies. The LMB has a clear
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experiments using mammalian cell lines, including embryonic cell types • Perform and optimize CRISPR/Cas9 gene knockout screens and targeted gene editing • Conduct high-resolution microscopy