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) Biochemical and biophysical characterization (e.g., binding assays, stability profiling) Cell-based GPCR signalling assays Functional validation in relevant in vitro systems Supporting in vivo pharmacological
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at DTU – Moving to Denmark . Application procedure Your complete online application must be submitted no later than 18 March 2026 (23:59 Danish time). Applications must be submitted as one PDF file
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on working in Denmark and at DTU at DTU – Moving to Denmark . Application procedure Your complete online application must be submitted no later than 16 March 2026 (23:59 Danish time). Applications must be
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diagnosis Biomarker attachment, surface chemistry optimisation, and biosensor signal readout analysis In vitro biological evaluation using mammalian cell culture systems, including 2D cultures, 3D spheroids
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dermal atomic force microscope (HS-DAFM) control software and signal processing circuits. These systems are critical for capturing high-quality nanotexture images from skin samples collected across five
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of the following areas: Ab-initio (e.g. DFT) description of point defects and layered 2D materials. Ab-initio (e.g. DFT) description of phonons and electron-phonon coupling. Modeling of nanomechanical
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. If you are applying from abroad, you may find useful information on working in Denmark and at DTU at DTU – Moving to Denmark . Application procedure Your complete online application must be submitted
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. The Hearing Systems Section is part of the Department of Health Technology. Our research focuses on auditory signal processing and perception, speech communication, technical and clinical audiology, auditory
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(e.g., laser systems, modulators, optical signal processing). Proven independence in research, with a track record of creative problem-solving. A curiosity-driven mindset, eager to explore uncharted
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the Photonic Integrated Circuit based Systems (PICSys) group. You will work in a state-of-the-art environment for advanced optical and digital signal processing, and integrated photonics, with access to one