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for 3 years. Responsibilities The successful candidate will: Develop, optimize and validate advanced 3D cell culture models, including spheroids, organoids and tissue-engineered constructs. Establish
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of spintronic THz source activated selectively in an arbitrary spatial pattern using spatial light modulators. Methodology: involves working on three integrated verticals: (i) Optimization of FM/HM
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with demonstrated ability to implement and optimize AI/ML models for biomedical datasets. Preferred Knowledge, Skills and Abilities Mathematical Modeling: Strong foundation in numerical modeling, graph
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Description They will lead the development of scalable catalyst manufacturing processes by translating laboratory formulations into kilogram-scale production, optimizing catalyst composition, support materials
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platforms, including robotic systems, laboratory automation, and AI/machine learning-assisted approaches for experimental design, optimization, and materials discovery. The research will target advanced
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, calibration, and optimization of a state-of-the-art single-photon-emission characterization platform together with ultrafast and time-resolved optical instrumentation. Develop, implement, and continuously
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. Preferred Skills: Background in quantitative research, evidenced by peer-reviewed publications, academic presentations, or preprint manuscripts Knowledge of Bayesian statistics, mathematical optimization
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, and feeding back and optimizing the growth process. 2. Construct high-efficiency and ultra-compact on-chip optoelectronic devices based on high-quality 2D materials. By combining nanofabrication and van
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(2024), J. Biological Chemistry 300(9): 107607 (2024). Duties and Responsibilities -Carry out research in Analytical Biochemistry, the improvement and optimization of protocols. Design and perform
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/optimization/programming software (e.g., HOMER, GAMS, and Python). Evidence of previous scientific writing or academic publications (e.g., peer-reviewed journals), industrial collaboration, knowledge transfer