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Laboratory is addressing thermal management and advanced packaging, mainly by manipulating nanomaterials and compositions to reach maximum thermal, electrical or mechanical performance. The group has a long
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the models and measurement methods. The position is based at the Division of Transport, Energy and Environment within the Department of Mechanics and Maritime Sciences . The division conducts
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to understand the factors influencing the biological stability of natural polymers. This postdoctoral position aims to develop knowledge on the degradation mechanisms of natural polymers derived from
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than the time at which the appointment decision is made. The ideal candidate will have a solid background in microRNA research and hands-on experience with next-generation sequencing technologies
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mechanisms and microbiology to animal structure and function! Our main subjects are genetics, anatomy, physiology, biochemistry, pathology, pharmacology, toxicology, immunology, bacteriology, virology
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Biophysics) at Karolinska Institutet, Stockholm, Sweden). Your mission This interdisciplinary project leverages expertise in mitochondrial disease and molecular immunology to investigate the mechanisms and
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live microscopy with biosensors to detect neurotransmitter release from cells and apply this platform to explore mechanisms of amyloid-b toxicity in Alzheimer's disease. Your work will focus
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on the microscopic level translates into the function on a macroscopic level. Imaging biomolecules, together with trace elements, is vital in understanding complex processes, disease mechanisms, or the effects
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Description of the workplace The position is placed at Solid State Physics at the Department of Physics, a division with around 100 employees where extensive research is carried out centered
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the mechanical properties of conjugated polymers change during electrochemical oxidation/reduction cycles. The aim will be to develop wearable electronic devices that leverage these changes, such as variations in