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Job Description If you dream about helping secure the green energy transition by developing technologies for power and energy system resilience, such as large-scale energy conversion and storage
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these. We conduct research within nanophotonics, lasers, quantum photonics, optical sensors, LEDs, photovoltaics, ultra-high speed optical transmission systems, bio-photonics, acoustics, power electronics
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October 2025, or as soon as possible thereafter. This position is part of the BIZPOWER (Business Power in the Politics of Wage Inequality and Climate Change) project, which investigates how businesses use
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) starting on 1 October 2025, or as soon as possible thereafter. This position is part of the BIZPOWER (Business Power in the Politics of Wage Inequality and Climate Change) project, which investigates how
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proficiency in German, Norwegian, or Turkish is an asset. Experience working in international, interdisciplinary projects is valued Ability to work independently and as part of a collaborative team. Who we
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development of functional materials, components, and systems for sustainable energy technologies. The technologies include fuel cells, electrolysis, power-to-x, batteries, and carbon capture. The research is
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Postdoc in development and testing of electrodes for liquid alkaline water electrolysis - DTU Energy
for sustainable energy technologies. The technologies include fuel cells, electrolysis, power-to-x, batteries, and carbon capture. The research is based on strong competences on electrochemistry, atomic scale and
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and the ability to work effectively in a collaborative, interdisciplinary research environment. We offer DTU is a leading technical university globally recognized for the excellence of its research
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the Sapere Aude research project ‘Imaginaries of “Existential Risks”: Making, Governing, and Contesting Humanity’s Future ’ funded by the Independent Research Fund Denmark. The postdoctoral position is a full
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, modelling, optimization and validation, and focus on: Develop thermally integrated storage and conversion systems, including Carnot batteries and/or high-temperature heat pumps based on power cycles. Design