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Field
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therapeutics. The experience includes opportunities to learn the operation and upkeep of physiological and cell culture instrumentation, apply quality assurance and quality control practices, and contribute
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Research Fellow to join our Fuel Cell and Hydrogen Technologies programme, contributing to a flagship research project on next-generation Vanadium Redox Flow Battery (VRFB) stack design and prototyping
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aspiration of 30 by 30. There are 3 institutions involved in this project; NTU, SIT and IHPC (A*Star). The project aims to use simulations and digitalization to guide the development and production of cells
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structures.; • Design and optimize, through full-wave electromagnetic simulations, a transparent unit cell operating in the FR3 frequency band.; • Investigate the integration of memristive switching devices
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cells shape the collective function of bacterial pathogen cell populations during colonization and infection, ii) how previously undercharacterized hydrolytic enzymes and dynamic changes in chemical
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diagnose bacterial infections. In particular, we are interested in understanding: i) how single cells shape the collective function of bacterial pathogen cell populations during colonization and infection
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a statistical decision-support tool that quantifies what each animal cardiovascular-safety study tells us beyond cell and simulation-based tests, flagging studies that are ready for retirement
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, contributing method development knowledge to the field. Deploy dynamic oral processing simulation platforms, including tribology, Kramer shear cell testing, and mastication simulators to investigate breakdown
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animals and researching lung comorbidities in HIV, as well as experience and publications demonstrating analyses of omics data, including RNA-seq, single-cell genomics, spatial transcriptomics, and
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techniques—including super resolution optical imaging as well as electron microscopy will be central methods, together with cell and molecular biology techniques.The candidate must have a background in