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, United States of America [map ] Subject Areas: Data Science, AI, Graph Theory, Optimization, Probability Theory Appl Deadline: 2025/07/30 11:59PM Position Description: Apply Position Description UNIVERSITY OF SOUTH CAROLINA
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dedicated to academic excellence. Our research, creative activity and people positively impact the world. Like the city we call home, UB is distinguished by a culture of resilient optimism, resourceful
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analyzing experiments on both test and preparatory scales; optimizing reaction conditions via experimental variable screens; characterizing small molecules via NMR, FTIR, and other spectroscopic methods Solid
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and optimize molten salt thermophysical property measurements, develop and utilize theoretical models and frameworks to predict salt properties, molten salt thermophysical property database expansion
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the development and testing of new materials. The work will involve reactor design and setup with gas flow capability and process optimization. Qualified candidates should have a Ph.D. in chemistry, physics
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data integration from multiple omics platforms will be considered a plus. The candidate will be expected to independently design and execute experiments, develop or optimize immunological and molecular
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the optimization of High- Throughput RNASeq capabilties. The successful candidate will help design and execute next- generation RNASeq experiments with the goal of significantly reducing the cost and increasing
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the research program. Use synthetic organic chemistry methods to develop and optimize fluorescent indicators and organelle-targeting ligands. Essential Function Yes Percentage of Time 35 Job Duty Design
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to environmental stimuli. This involves protein movement and dynamic protein-protein interaction to maintain optimal photosynthesis, stress responses, and other metabolic processe Key Responsibilities 1) Perform
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. Work with NSLS-II automation team and engineering support staff to develop the next generation of robotics and sample preparation protocols for XCFS. Optimize crystallization systems for XCFS campaigns