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decarbonization of the industrial sector, technically efficient and cost-effective solutions integrating renewable energy sources, electrification of heat, and energy storage are deemed. We aim to design and
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transport physics Expertise in low-temperature transport and high frequency measurements Experience with cleanroom processing of nanodevices Programming skills for electrical measurement scripts and data
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for producing lignocellulose-based materials with good thermoformability at elevated temperatures through plasticization and to develop a mechanistic understanding of the effects achieved. The materials should
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for energy and industrial applications. You will work experimentally with catalyst development, reactor testing, and process optimization with ASPEN. The research includes operating high-temperature systems
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at elevated temperatures through softening, and to develop a mechanistic understanding of the effects achieved. The materials should have a high content of cellulose/lignocellulose. Applicants
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quality research. Teaching skills. Other qualifications: Significant experience in experimental transport physics Expertise in low-temperature transport and high frequency measurements Experience with
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available via a shared digital platform. Hycogen 2 investigates how surplus heat from hydrogen production can be utilized efficiently. During electrolysis, approximately 30% of the energy is converted
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, sealed ampoules) at high temperatures Structural and compositional characterization using X-ray diffraction (single crystal and powder incl. Rietveld) and scanning electron microscopy with EDX Initial
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to characterization of advanced devices in 2D materials and graphene. Part of the work time will be in the office at Brunnshög close to the large international and national infrastructures Max IV och ESS. More on Max
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research direction and work assignments Your research will focus on developing heterogeneous catalysis of vapor phase reactants. The goal is to study vapor phase reactions of high boiling point liquids where