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PL 02-093, Poland [map ] Subject Area: High-Energy Theory / quantum gravity Appl Deadline: 2025/12/12 11:59PM (posted 2025/09/17, listed until 2026/03/17) Position Description: Apply Position
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mapping, gene expression, flowering time regulation, vernalization, photoperiod, lupin. Research topic: The main goal of our project is to identify and characterize vernalization pathways in New World
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following criteria: -Hold at least a doctoral degree; -Have a strong background in remote sensing and GIS, particularly in analyzing LiDAR and hyperspectral data; -Possess knowledge and experience in mapping
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-processing of the velocity maps. Knowledge of LabView, MatLab and Tecplot software. Highly scored publications in peer-reviewed scientific journals related to near-wall flows, especially turbulent flow
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work on: “Fitting Glycans and Flexible Protein Regions into cryo-EM Maps for Complete Glycoprotein Modelling.” In cryo-electron microscopy (cryo-EM), structural models are generated by averaging tens
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workflows, including data formats, handling Electron Microscopy Data Bank entries, performing map-model fitting. Proficiency in Unix/Linux environments and solid programming skills in Python and Bash
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will contribute to: Design and implementation of context-aware human and object recognition pipelines from RGB-D video data Development and semantic mapping of human-object relations Involvement in
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the Swiss National Science Foundation (SNSF) under the MAPS Multilateral Academic Projects initiative and in collaboration with the National Science Centre (NCN). Where to apply Website https
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regulatory RNAs during colonisation of mucus producing colon epithelial cell models (HT29-MTX-E12). • Mapping sRNA-mRNA interactions: The study will predict (IntaRNA, CopraRNA) and validate direct mRNA targets
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literature using databases such as: PubMed, Scopus; ability to use and understand tools based on large language models, e.g., Microsoft Copilot, Google Gemini, Perplexity AI ability to independently plan and