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sensor data, and (iii) sophisticated fatigue analysis models combining advanced fracture mechanics with crack initiation and growth simulation. Additionally, you will explore fatigue mitigation strategies
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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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research. Your primary research project will focus on MEMS-based sensors, circuitry design and fabrication, and data analysis, but you will have some latitude to study a variety of scientific topics chosen
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externally funded, convergence research at the intersection of polymer chemistry, surface science, sensor technologies, environmental engineering, with Omics-driven approaches for materials discovery. This is
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, sensors, electronics and mechatronics; potentially extending towards robot manipulation, robot perception and machine learning. If you are passionate about advancing knowledge in these fields and enjoy
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(and firmware development) with lab work alongside our microfluidics team. You also take part in the design, build, testing and iteration of fluidic instruments and platforms, integrating sensors, pumps
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services, fostering a culture of excellence while effectively stewarding university resources and the environment. If you would like to learn more about UES, please visit: https://utilities.tamu.edu/ What We
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-associated systemic metabolic dysfunction. We use genetically engineered mouse models, patient-derived organoid cultures, optical redox sensors, chemical proteomics, single-cell sequencing, metabolomics, and
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The Cluster of Excellence Physics of Life" (PoL, https://physics-of-life.tu-dresden.de/en ) is an interdisciplinary research center at TUD Dresden University of Technology dedicated to quantitative
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such as COPD and cystic fibrosis. The digital twin, which is a computational model running alongside the ALI model, integrates real-time imaging and sensor data with machine learning to monitor progression