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Field
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-)fluidics Implementation of microscopy techniques (including confocal) and microrheology Structural and mechanical characterization of the gels Data analysis (using Python or equivalent tools) Literature
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recommendation mechanisms based on semantic analysis and natural language processing, with the aim of facilitating collaboration and convergence of proposals. Developing and training NLP algorithms in multiple
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[doi.org/10.1021/acs.jctc.3c01018 , doi.org/10.26434/chemrxiv-2022-mkfzd ]. (ii) Applying multiscale excited-state dynamics simulations to unravel the mechanisms of electron-induced damage to biological
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basis. The successful applicant will investigate the structure, dynamics, and mechanism of the bacterial Type IV pilus (T4P) machinery in the model organism Thermus thermophilus. The project will employ a
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applications Conduct detailed characterisation and analysis of composite materials, including mechanical, thermal, and structural performance testing Document findings, prepare technical reports, and contribute
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in employing advanced characterization techniques to probe the structure of catalyst active sites under working conditions and catalytic mechanisms. The project aims to develop reaction engineering
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using variable structure systems; preparing competitive research grant applications, particularly targeting Category 1 outcomes; and publishing in leading journals and conferences. The Research Fellow
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the performance of biobased additive/modifiers for asphalt binders and lubricants, research the separation process to produce high boiling FPO fraction, analyze their mechanical properties, and assess
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skills. You will test recently developed antibodies and generate new antibodies targeting specific structures of the tumour B-cell receptor (specifically those of chronic lymphocytic leukaemia and/or
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structures of the tumour B-cell receptor (specifically those of chronic lymphocytic leukaemia and/or follicular lymphoma). These antibodies will be used for either diagnostic and therapeutic purposes