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/). Research in the DREAM lab centers on the intersection of polymers and therapeutics at the nano, micro, and macro scales. Their goal is to prevent, manage, and treat diseases through the innovative use
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/). Research in the DREAM lab centers on the intersection of polymers and therapeutics at the nano, micro, and macro scales. Their goal is to prevent, manage, and treat diseases through the innovative use
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an extensive infrastructure supported by core facilities dedicated to technology such as state-of-the-art light microscopy, nano- and micro- fabrication, and computing. We are seeking a highly motivated
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. This will involve the design, micro/nano-fabrication, and characterisation of single-photon avalanche diodes, working in the James Watt Nanofabrication Centre (https://www.gla.ac.uk/research/az/jwnc/) and in
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Knowledge: Experience with advanced microscopy techniques such as transmission electron microscopy (TEM), scanning electron microscopy (SEM), electron backscatter diffraction (EBSD), and nano/microindentation
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electronics, and nano-engineered sensing technologies. You will work on the development of flexible and stretchable sensing platforms for pressure, strain, bending, and tactile sensing. The project will involve
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development of low-dimensional nanophotonic structures for nano-optical applications. Key responsibilities Conduct research and develop theoretical models for nanophotonic systems based on low-dimensional
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., NVIDIA Jetson Nano) Real-time processing and GPU acceleration Experience working on industry R&D projects Key Competencies Able to build and maintain strong working relationships with team members
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overexpression) approaches. We are also currently developing RNA-based nano-therapeutics to target these cofactors and small RNAs to overcome the therapeutic resistance of human breast cancer. Essential Functions
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fluidic models to interface with appropriate imaging and analytical methods such as optical microscopy, SEM, real-time AFM, Raman microscopy, nano-FTIR. Use the validated models to study the dynamics