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heterostructures and transition metal oxide membranes using a Heidelberg Nanofrazor scanning thermal probe lithography system. The project is 2/3 funded by an Alliance Stipend collaboration with EPFL, combining
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to mutual agreement. The position is a full-time position, and the work will be conducted in the section of Thermal Energy Systems, DTU Construct. Application procedure To apply, please read the full job
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. The starting date is 1 December 2025, or according to mutual agreement. The position is a full-time position, and the work will be conducted in the section of Thermal Energy Systems, DTU Construct. You can read
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PhD Scholarships in Piezophotoacoustic Technology for Minimally Invasive Endoscopy - DTU Health Tech
by nanosecond pulsed laser exciting thermal and piezoelectric expansion in fiber-integrated materials. Piezoelectric materials will be employed for both enhancing the photoacoustic generationa and for
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photoacoustic by nanosecond pulsed laser exciting thermal and piezoelectric expansion in fiber-integrated materials. Piezoelectric materials will be employed for both enhancing the photoacoustic generationa and
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, solid mechanics, fluid mechanics, materials technology, manufacturing engineering, engineering design and thermal energy systems. Technology for people DTU develops technology for people. With our
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, interdisciplinary approach aims at relating the atomic-scale structure, dynamics and functions of single nanoparticles in both thermal catalysis and electrocatalysis, aiming to advance the understanding of catalysis
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, manufacturing engineering, engineering design and thermal energy systems. Technology for people DTU develops technology for people. With our international elite research and study programmes, we are helping