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in the Biodiversity Dynamics and Conservation Group, a team of about 30 persons. Our group studies patterns of biodiversity and biodiversity change at various spatial and temporal scales, with a
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and spatial omics integration and latent modeling with scVI for batch correction and label transfer Regulatory genomics and motif analysis using tools from MEME Suite or HOMER. Cloud-native NGS workflow
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at various spatial and temporal scales, ranging from individual cells to tissues, organs, and full physiological systems. Computational modeling and simulation: development of constitutive laws, finite-element
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experiments that require a focused coherent beam to achieve ultimate resolution, such as ptychography and coherent diffraction imaging. Secondly, the nanofocused beam also provides prime spatial resolution
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and temperature in Morocco. This will involve data analysis, model design, and algorithm implementation. Work closely with the team to integrate various data sources into the modeling framework
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expertise, including facilities for high-throughput screening and high content imaging, multimodality in vivo imaging, proteomics, spatial and single-cell transcriptomics. As part of King’s Health Partners
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across three main themes: 1. Urban Landscape Mapping – assisting in the collection and spatial analysis of perception data using digital and GIS tools; 2. Intergroup Perception and Interaction
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that have been made available for the project using instruments and facilities at Curtin University. Work collaboratively with researchers (including PhD students) in the asteroid sample analysis team
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of the temporal and spatial distribution of the exhaust gases in the atmospheric layers after the launch vehicle has passed through is therefore crucial for drawing conclusions about their climatic influence. Tasks
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-cell (RNA+ATAC-seq), and spatial transcriptomics (RNA-seq) profiles of hematopoietic and non-hematopoietic progenitor cells in the bone marrow. We aim to characterize all cell types (see: https://doi.org