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understanding of tissue growth and inform in vitro experiments? Then you might be our next PhD candidate! Information Functional and durable regeneration of articular cartilage is still an unsolved challenge
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environment. Our research facilities include access to state of the art pilot plants, ability to use a range of sensors and expertise in process modelling and design. The PhD project will be undertaken in
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, such as ptychography, in which we reconstruct object images from measured diffraction data. We produce coherent EUV radiation using a process called high-harmonic generation (HHG), which is an extremely
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using a laboratory-scale prototype representing a selected electrified energy application, such as electric propulsion or another high-performance energy conversion system The PhD candidate will
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physics, particularly photodetectors or image sensors. Experience in at least one of the following: semiconductor processing, cleanroom fabrication, device modelling or TCAD, electrical characterisation
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PhD in Optical Characterization and Photonic Performance Analysis of Liquid Crystal Polymer Coatings
for a motivated PhD candidate to study the optical and photonic performance of advanced liquid crystal polymer coatings for one-way transparency, adaptive camouflage, and smart optical interfaces
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to design detector-integrated photonic crystals for this endeavour. Job description We are seeking a highly motivated PhD candidate to join the INTERPRETER project, an interdisciplinary research initiative
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on the ventilation process, which typically considers the use of window and mechanical air treatment based on average climate measurements. Airflow affects crop transpiration, growth, development, yield and quality
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into the key parameters governing these processes, inform targeted in vitro experiments, and help design better biomaterials and TE strategies that harness mechanics and geometry. As a PhD candidate, you will
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Job description As a PhD candidate, you will contribute to the development of next-generation superconducting integral field units (IFUs) for terahertz astronomy. The project is based on Microwave