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strong background in microfabrication processes is expected. Experience in the development and fabrication of sensors, bioelectronic devices, microelectrode arrays (MEAs), or lab-on-chip/organ-on-chip
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The postdoc project aims at fabricating graphene edge sensors for single molecule detection and biopolymer sequencing. The device architecture will be scalable and tunable by combining unique
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validation of novel microsensors, which will be deployed alongside standard in-stream sensors and transitional grab-sampling methods. The Scholar will develop proficiency in operating a broad range of high
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research. Your primary research project will focus on electronics based environmental sensors to detect pollutants in water and microneedles for drug delivery for skin diseases, but you will have some
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finite element analysis and modal analysis techniques. • Experience with vibration analysis, dynamic testing, or mechanical systems characterization. • Proven record of publishing refereed journal articles
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partners. The model will represent the main structure of the process, including thermal behaviour and gas flows, key dynamics of the system apparatus, sensor and actuator dynamics, and relevant thermal and
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We are seeking motivated researchers with expertise in large-area 2D materials growth for sensor and transistor applications. The focus is on developing wafer-scale 2D materials using CVD, PLD
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if additional funding is secured to extend employment. Required Qualifications: Ph.D. in Polymer Science, Materials Science and Engineering, Textile Engineering, Chemical Engineering, Biomedical Engineering, or a
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for the automatic and scalable assessment of interventions using observational spatio-temporal datasets generated by modern sensing technologies (e.g., IoT sensors, mobile devices, Earth observations). What you will
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applicant will have: A PhD in Materials Science, Applied Physics, Electrical Engineering, Chemistry or a closely related discipline. Strong background in modeling and simulation of thermal/energy systems