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research experiments, assesses findings, and compiles comprehensive reports. Maintains instruments, develops new methods, and optimizes existing ones. Keeps meticulous records of procedures and research
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students, interact with collaborators, and adopt and optimize relevant techniques for the project where applicable. Professional development: 5% Requirements PhD in molecular biology, cancer biology
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. Physical, biochemical, and molecular characterization of sEVs. Develop and optimize efficient and reproducible EV isolation protocol based on downstream applications. Outline LC-MS/MS based proteomic
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in electric vehicle applications. Scientifically, the following parts will be included in the research: a) Fabrication and optimization of large-scale hBN films of high quality with high in-plane
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of transformative therapeutic approaches for brain tumor patients. ESSENTIAL FUNCTIONS Technology and Methodology Development: Independently develop and optimize novel technologies and analytical methods, including
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mar345 Image Plate detector. An Osmic VariMax optics system and the Proteros Free Mounting System can be used to control the humidity and to optimize diffraction characteristics, including resolution
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techniques. The research will integrate ab initio-based modeling and DFT calculations with experimental data to enhance the understanding and optimization of the proposed materials as sorbents or possible
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: (1) Conducting high fidelity CFD simulations of combustion, heat transfer, chemical reactions, and phase change phenomena in industrial processes using commercial software. (2) Optimizing existing in
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Areas: Engineering / Chemical Engineering Human Centered Design Fiber Science / Textile Material Science and Engineering Salary Range: $61,008 to $87,000 Appl Deadline: (posted 2025/04/16, listed until
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for mastering magnetron sputtering of piezoelectric thin films. This includes: Exploiting new deposition schemes and parameters of reactive magnetron sputtering, aiming for optimal piezoelectric thin film