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in deep collaboration with the Functional Materials Technology, Inverse Materials Design, Light-Matter Interaction Theory, Next Generation Energy systems, Oxide Single Crystal, and III-V Compound
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the target analyte molecules with shape, size, and pattern of complementary interactions, i.e., hydrogen bonds, electrostatic attraction, and π-π stacking. Therefore, these cavities can recognize and bind
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environment. Details about the project: https://www.ncn.gov.pl/sites/default/files/listy-rankingowe/2024-09-16-titokb02cwd/streszczenia/637514-pl.pdf Leader dr Marcin Tabaka Microbes inhabit almost every part
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and interdisciplinary research environment. Details about the project: https://projekty.ncn.gov.pl/opisy/590787-en.pdf About the group: The Computational Genomics Group at IPC PAS is led by dr Marcin
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science positions in project OPUS 29 entitled "The application of non-covalent and electrostatic interactions in the design of helical oligomers to disrupt bacterial cell membranes" financed by National
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the most promising molecules. In the second stage, we will focus on designing optimal two-qubit gates based on strong dipole interactions and the control of molecules with optical tweezers. Finally, the
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compared with publicly available human data in terms of divergent zonal composition, cell interactions, as well as chondrocyte and epithelial cell types and functions. On the other hand spatial
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interaction studies, the use of tools for generating in silico models, and issues related to the project’s subject matter. Ability to plan and conduct experiments and to visualize results. Ability to make
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- engaged in constant interactions with proteins, other RNAs, and the ribosome - until it is inevitably degraded. How do these events coordinate in time and space? Why do some RNAs survive while others
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for analyzing the heterogeneity of microbiota and inferring activities of biological pathways. The Institute provides an international and interdisciplinary research environment. Details about the project: https