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Field
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, Environmental Engineering, Materials Science, Mechanical Engineering, or a related field. Strong background in membrane science with demonstrated expertise in either membrane fouling or electrochemical membrane
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with a background in cell or molecular biology. Experience with fluorescence or confocal microscopy, GPCR signaling, or membrane trafficking is highly desirable. The successful candidate will contribute
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-based separation and/or membrane technology. Develop novel adsorbents and/or membranes for gas or liquid storage and separation applications. Characterize adsorption and transport properties using
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About the Role A fully funded Postdoctoral Research Assistant position is available to join Dr Pedro Monteiro team to study the role of plasma membrane dynamics in cancer. The successful applicant
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 2 days ago
prevalence of diabetes and other inorganic arsenic-associated diseases. The removal of arsenic and other contaminants from water using membrane technology is one such intervention. The postdoctoral researcher
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lysosomal membrane damage in Parkinson’s disease. The selected candidate will apply cutting-edge technology, including high-end microscopy, unbiased screening strategies, organelle isolation and gene editing
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Aalto University is where science and art meet technology and business. We shape a sustainable future by making research breakthroughs in and across our disciplines, sparking the game changers
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of Engineering and professor Raed Hashaikeh, Professor of Mechanical Engineering. The successful applicant will lead an innovative project focused on the development of surface-patterned membranes with tailored
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Posting Title Postdoctoral Researcher – Separations science and engineering for biorefining . Location CO - Golden . Position Type Postdoc (Fixed Term) . Hours Per Week 40 . Working at NLR NLR is
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epithelial cells and its functional relevance in cancer dissemination. A central focus is the mechanistic dissection of AQP2 vesicular shuttling and regulated membrane insertion in renal collecting duct cells