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renewable energy sources can be saved and stored in a form of hydrogen and used when needed. The development and implementation of hydrogen is a technological and, more importantly, a societal challenge. It
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itself, but serves as an energy carrier. Energy produced from gas and/or renewable energy sources can be saved and stored in a form of hydrogen and used when needed. The development and implementation
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greenhouse gas emissions. Hydrogen is not an energy source in itself, but serves as an energy carrier. Energy produced from gas and/or renewable energy sources can be saved and stored in a form of hydrogen and
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, University of Groningen (UG)). Two PhD positions are available, one at each institute. The UG candidate will utilize newly developed microscopy methods, including Förster resonance energy transfer-fluorescence
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microscopy methods, including Förster resonance energy transfer-fluorescence lifetime imaging (FRET-FLIM), to map SNARE protein trafficking to WPBs. Techniques include FRET-FLIM microscopy, mammalian cell
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will utilize newly developed microscopy methods, including Förster resonance energy transfer-fluorescence lifetime imaging (FRET-FLIM), to map SNARE protein trafficking to WPBs. Techniques include FRET
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We seek a PhD candidate who is passionate about energy and sustainability scientific problems with a focus on the critical material perspective. Successful candidate will be under supervision
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consequence of a universality principle in random structures: the precise random dynamics of cell growth in the two organisms is different, but those differences have a negligible effect on the overall
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PhD position Critical material sustainability and energy transition (V24.0036) « Back to the overview Job description We seek a PhD candidate who is passionate about energy and sustainability
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Background: Geological reservoirs used for producing or storing energy are heterogeneous. Characterising and quantifying geological heterogeneities is challenging because sampling scales (e.g., thin