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proposed for testing (behavioural online experiments, bio-signals, EEG, Eye Tracking). They will be involved in all steps of the research: experimental design, data collection, analysis, including science
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academic backgrounds to contribute to our projects in the 4 strategic research areas of SIGCOM, namely: i) Radio frequency transceiver design; ii) Optical communications; iii) Quantum communications; iv
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Optical and Radio Technologies (ANCHOR)” The studentship covers UK fees and provides a generous salary, consumables, and travel budget. Extending high-speed wireless data transfer to the underwater
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carbon and boron nitride nanotubes - Physico-chemical methods for the growth and characterization of the molecular-tubes heterostructures, as well as optical spectroscopies for the investigation
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Analysis of Metallic Alloys R26-10 Functional Inorganic Nanomaterials R26-11 Optical Nanomaterials R26-12 Measurement Informatics on Synchrotron Research Environment Support up to 10 million yen depending
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requirements: experience with surface analysis techniques (e.g. optical methods, reflectance methods, electron or spectroscopic techniques) experience in research on plasma or plasma catalysis experience working
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models of cancer, optical microscopy and spectroscopy, and image analysis in the Department of Biomedical Engineering. The SRA will oversee and manage the work of graduate students and undergraduate
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on an EPSRC funded research project that is exploring perovskites for photonics applications. The project will be led by Professor Noel Healy at Newcastle University. You will be working to optimise the optical
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will play a key role in exploring novel quantum phenomena through device fabrication, low-temperature transport measurements, and state-of-the-art optical sensing techniques. Minimum Qualifications: Ph.D
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focuses on the biomedical applications of in-house developed hybrid nanomaterials and nanozymes, including colorimetric and optical (nano)diagnostics, and on understanding how nano–bio interfaces govern