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with potential extension to more complex structures and environments. The ideal candidate will have experience with some of the methods listed below (see Group overview), ultrahigh vacuum (UHV), and a
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Infrastructure? No Offer Description BACKGROUND Solar-control glazing modifies the fraction of incident transmitted solar energy allowing for improved thermal insulation of buildings. It is produced by in vacuum
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, and/or laser spectroscopy. The experimental work would benefit from experience with high-vacuum technology, molecular beams, (infrared) lasers, cluster sources, and/or mass spectrometry. You work in a
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state-of-the-art electronic, optical and vacuum equipment. In addition, it will be required to perform data analysis and programming for experiment control. You will present your work in scientific
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bench space across 6 large benches. The lab space is equipped with gas/vacuum lines, fume hoods and two -80C laboratory freezers. The laboratory is located in an ~80,000 sq.ft building occupied solely by
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the range of ~2000°C in vacuum. When produced in the bulk of the material, the isotopes have to diffuse out of the target material grains and effuse throughout its interconnected pore network to escape from
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, Materials Science, or a related field is preferred. Experience with vacuum systems, thin-film growth, nanomaterials, solid-state physics, or thermoelectric characterization is also beneficial. About the
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@ifs.hr ). Research methods include experimental work in the laboratory, with an emphasis on handling cryogenic liquids, superconducting magnets, high vacuum, and experimental setups for measuring
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Laboratory provides an advanced thermal–vacuum facility that enables environmental testing of complete satellites and subsystems under simulated space conditions. This includes vacuum, thermal cycling, thermal
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) techniques mainly involving MEX, PBF, VPP, metal Atomic diffusion (ADAM), electrospinning, electroforming, rapid tooling and vacuum casting, as well as on polymer processing (injection moulding, compression