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- Institute of Biochemistry and Biophysics Polish Academy of Sciences
- Silesian University of Technology
- The International Institute of Molecular Mechanisms and Machines Polish Academy of Sciences
- Institute of Bioorganic Chemistry Polish Academy of Sciences
- Institute of Nuclear Physics Polish Academy of Sciences
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and implementation of parton-shower algorithms and their matching to higher-order pertubative computations in Quantum Chromodynamics. Additionally the analyses of the results in the context of the LHC
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annotating experimental findings from the literature— with advanced machine learning approaches to extend functional annotation of LCRs. • Apply clustering algorithms to group LCRs by similar annotation
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of biological databases, algorithms and pipelines; experience in working with phylogenetic/ genomic/transcriptomic/systems biology tools will be a bonus; being well organized, eager to learn and ready to
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the project is the development of AI-based pipelines for detecting, segmenting, and classifying lichen communities. Convolutional neural networks (e.g., U-Net, DeepLab) and machine-learning algorithms (e.g
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The International Institute of Molecular Mechanisms and Machines Polish Academy of Sciences | Poland | 1 day ago
homeostasis. We are looking for a highly motivated person to: - Performing experiments using biochemical, molecular biology, or genetic techniques (independently and in collaboration with other team members
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The International Institute of Molecular Mechanisms and Machines Polish Academy of Sciences | Poland | 1 day ago
an excellent scientific environment, - Comprehensive training in genetics, biochemistry and molecular biology, - Access to the state-of-the-art equipment and facilities, - Participation in courses and
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a complex interplay between genetic, hormonal, and environmental factors. Key among these are the DELAY OF GERMINATION 1 (DOG1) gene and the abscisic acid (ABA) pathway. Our recent discoveries
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. Cell culture experiments including the induction of hormone secretion, introducing stress conditions, and molecular perturbations, such as silencing of gene expression and/or introducing genetic
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microscopy, and metabolic tracing using GC-MS and 13C-labeled metabolites. T cell function will also be studied in vivo using a genetically modified GPD2-deficient mouse strain (GPD2 KO) fed a standard or high
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biology methods, RT-PCR, flow cytometry, confocal microscopy, and metabolic tracing using GC-MS and 13C-labeled metabolites. T cell function will also be studied in vivo using a genetically modified GPD2