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transcriptomes. Map RNA-protein and RNA-RNA interaction networks using CRAC, RIL-Seq, and co-IP/MS. Reconstitute key interactions in vitro and analyze them using smTIRF microscopy. Collaborate with international
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HR and HER2-targeted drug regimens with high efficacy, fewer side effects, and resistance avoidance. The project aims to select unique combinations of chemotherapeutics and molecules interacting with
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or brazing; (iii) designing of metal or ceramic matrix composites (MMCs or CMCs). Our recent projects were focused around the research on ultra-high temperature materials for either structural and functional
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-compatible temperature control systems, proven by documentation ○ Quantum estimation, proven by a publication track record ○ Construction of major experimental setups with cold atoms and quantum light, proven
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neutrophils. Using physiologically relevant systems, we also aim to examine the complex cellular interactions within the tumor microenvironment (TME), with the with the end goal of leveraging these insights
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and offsite data and manage them in appropriate formats and structures relative to spatial and other quantitative data. Ability to use GIS packages such as ArcMap or QGIS. Production of high-quality
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: periodic precipitation (PP) and chemobrionic systems, which enable the construction of functional architectures from nanoparticles and metal-organic frameworks (MOFs). By harnessing non-equilibrium dynamics
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Jerzy Haber Institute of Catalysis and Surface Chemistry, Polish Academy of Sciences | Poland | 2 months ago
molecular architecture and the resulting structures - as the structural parameters and interfacial behavior of the multicharge surfactants - are essential for understanding their adsorption and aggregation
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dynamical studies in smart material structures. Main Research Fields: Mechanical Engineering, Control Eng, Materials Eng, Process Eng, Energy Technology, Applied Physics - Energy Harvesting, Multi-body and
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controlled monomer sequences that can self-organize into complex supramolecular structures. The research aims to understand the mechanisms of single-chain folding and hierarchical self-organization, enabling