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, Geraint Evans, Haesom Sung, and Ritesh Ghosh. Applicants with particular research interests in heavy-ion collisions, QCD at finite temperature and density, quantum field theories with strong fields, and
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advanced analysis methods for these datasets across multiple surveys. Possible research directions include (but are not limited to): • Joint analysis of cluster abundance, weak gravitational lensing and
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neutrino astrophysics, heavy element nucleosynthesis, astrophysical probes for physics beyond the Standard Model, and the related theoretical astrophysical modeling are welcomed to apply. The initial
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. High-energy cosmic rays and neutrinos, and high-energy astrophysics. Hadronic interactions, extensive air showers, and event generators. Neutrinos and heavy element nucleosynthesis in stellar explosions
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research. The Institute of Atomic and Molecular Sciences serves as a multidisciplinary center of excellence, with projects spanning spectroscopy, molecular dynamics, advanced materials synthesis and analysis
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Research Areas and Type of Position The candidate’s research shall concern at least one of the following areas: Geometric measure theory, Geometric analysis, Elliptic partial differential equations
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following areas: geometric measure theory, geometric analysis, elliptic partial differential equations, and calculus of variations. This position yields the opportunity to conduct an independent research
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analyses for tissue characterization and protein expression analysis. Develop and optimize experimental protocols and methodologies. Contribute to data interpretation, manuscript preparation, and
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independent neuroimaging analyses using structural, diffusion, and resting-state functional MRI data. Design, implement, and optimize data preprocessing and analysis pipelines. Integrate multimodal datasets
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Geometry Differential Geometry and Geometric Analysis Differential Equations Scientific Computing Interdisciplinary Studies Analysis and Probability Mathematical foundations for AI Applicants are encouraged