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alternatives to traditional oil-based thermoplastics. Further, reactive extrusion strategies will be considered to overcome inherent drawbacks, e.g. the water sensitivity of the fibre-based materials. Different
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Profile of the dept. or college (Not required) Insert Name Here: Civil, Environmental and Construction Engineering The Opportunity (Job description): The Department of Civil, Environmental and
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of Science and Technology and conducts research in biochemistry, organic chemistry, analytical chemistry, and physical chemistry. The research is focused on catalysis, molecular recognition, structure and
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University of New Hampshire – Main Campus | New Boston, New Hampshire | United States | about 6 hours ago
collection from air- borne (unpiloted aerial systems) and vehicular mounted sensor systems for determining pavement functional and structural conditions. The project that the candidate will be working on is
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groups and 800 employees, the Department of Biomedicine is the largest department at the University. We are located in the heart of Basel at 6 different locations. Be part of our future! We are
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contributing to the project. Elucidate chemical as well as structural ageing mechanisms of structured and pure solid sorbents under different ageing conditions. Develop accelerated and high throughput sorbent
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an environment where each and every one of us is appreciated for who we are, regardless of our differences. If you consider that you do not meet all the requirements, we encourage you to continue applying
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and control of light–matter interactions at the nanoscale, combining nanophotonics, structured light, metasurfaces, and advanced optical techniques. The group studies and develops nanophotonic
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microscopy datasets now capture millions of single-cell images across diverse perturbations, but differences in imaging protocols, marker panels, and cell types limit their integration and reuse. A key
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on simulating nanoalloy structures to create a database for materials characterization. The main tasks include running molecular dynamics and Monte Carlo simulations to model nanoalloys under various