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Field
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Job description Living systems process and respond to signals, and these responses range molecular or electrical changes inside a (neuronal) cell to macroscopic behavioural responses of animals
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or fuel cells who can translate engineering concepts into working experimental systems. The role will involve device design and assembly, electrochemical performance and durability testing, process
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their supporting systems. We are particularly interested in candidates with practical experience in electrolysers or fuel cells who can translate engineering concepts into working experimental systems
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; experience working with a range of observational data sets of atmospheric composition such as ground based and remote sensing measurements; and an emerging strong track record of scientific output
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postdoctoral researcher will develop and apply advanced simulation techniques, and data-driven approaches to explore complex biophysical phenomena at the cell membrane. This role provides a platform for
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Massachusetts Institute of Technology (MIT) | Cambridge, Massachusetts | United States | 3 months ago
cloning/molecular biology, protein engineering and biochemistry, mammalian cell/tissue culture, flow cytometry, next-generation sequencing, transcriptomics, and animal models of disease. This is an
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validate innovative electroactive biomaterials and bioelectronic devices that promote cardiac regeneration by combining tissue engineering, biomaterials, stem cell biology and bioelectronics. Working closely
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Energy). The candidate should have expertise in experimental work, for both material science and process technology, to demonstrate the new redox flow battery technology at cell level. Job requirements
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analyses from various 2D/3D cell models. He/She will produce and characterise peptides derived from the extracellular matrix. He/She will analyse the results and contribute to their application. He/she will
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microbiome-associated diseases. This position centers on cell-free RNA (cfRNA) liquid biopsy, a rapidly emerging technology that reads dynamic, tissue-resolved signals of human physiology and disease from a