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amplifier performance. By combining advanced device measurements, empirical modeling, and power amplifier design, this project will generate new insights into the material, process, and design factors
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in our relationships with each other. We value a workplace that is perceived as equitable, developing and stimulating for all employees. We constantly work to create conditions for job satisfaction
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to the development of methodologies for modelling, predicting, and validating dynamic interactions through numerical simulations and field measurements. This project is funded by The Swedish Transport Administration
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postdoctoral fellow to work with advanced 3D models of lung to understand regenerative processes in normal conditions and disease states. The employment is full-time 100% with the desired start date on 15
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triggered forest abiotic and biotic disturbances to an unprecedented intensity in Europe in recent years. Windstorms, drought, insect outbreaks, and forest fires are exacerbated by extreme weather, weakening
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forest abiotic and biotic disturbances to an unprecedented intensity in Europe in recent years. Windstorms, drought, insect outbreaks, and forest fires are exacerbated by extreme weather, weakening
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improve models and codes for assessment of the liquid source term during severe accident (SA) of LWR systems. In particular, research will include assessment of the characteristics of the containment water
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Lallemend at the Department of Neuroscience, Karolinska Institute, to investigate the molecular landscape of the inner ear during development and under various physiological and pathological conditions. The
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Engineering, (IDT) Position description The purpose of the position is to give the employee an early opportunity to develop his or her independence as a researcher and to create the conditions for further
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mathematics, ecology, history, climatic and medical sciences in collaboration across multiple institutes. An integral part of the project is to develop process-based eco-epidemiological models considering