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, your tasks will include: •Designing, executing, and analyzing model-based workflows to study the molecular response of cartilage under mechanical load. •Integrating advanced imaging techniques, including
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is highly desirable. An ideal candidate will have a solid background in physics and chemistry, particularly in the area of statistical mechanics and percolation theory, materials modelling for fluid
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Description The project aims to better understand molecular mechanisms of infection through structural studies of virulence factors in emerging infectious disease. We focus on Bunyaviruses, three of which
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mechanisms of the regulation of synaptic transmission in mammalian brain and human neurons derived from human tissue. In addition, the postdoc will perform molecular, cellular and/or electro-physiological
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electrolytes, solid electrolytes face intrinsic challenges: (i) lower ionic conductivity, (ii) reduced interfacial contact between electrodes and electrolytes, (iii) mechanical stress due to volume changes
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potential lends itself to this. Required profile: · With a PhD in physics or mechanical engineering, the successful candidate will have acquired solid skills in the mathematical and numerical methods
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Minimum Education and Experience: The candidates should have a Ph.D. in Mechanical Engineering, Biomedical Engineering, Materials Science and Engineering, or other related disciplines. The candidate should
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of buildings with walls made of macroblock masonry. These blocks are composed of compacted stabilized earth, and the mechanical behavior of this non-conventional material has not yet been fully established
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Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description The molecular mechanism of bio-magnetic sensing, utilized
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. Experience in Atmospheric Water Harvesting, metal organic framework modelling and machine learning is highly desirable. An ideal candidate will have a solid background in physics and chemistry, particularly in