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WIB_PACMAN project. Join a project developing innovative tools for targeted therapies! The project will employ highly sensitive fluorescent probes to identify, localize, and quantitatively assess the activity
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WIB_PACMAN project. Join a project developing innovative tools for targeted therapies! The project will employ highly sensitive fluorescent probes to identify, localize, and quantitatively assess the activity
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involve conducting computer simulations and computational studies as part of the research project titled "Design, characterization, and description of the mechanisms of action of heterostructural
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, with about half of the lab members coming from abroad. We are committed to conducting innovative research at the best international level. Our recent publication Rojek K. et al., „Amot and Yap1 regulate
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of single vortex in superconducting nanostructures including the design and fabrication of samples using electron-beam nanolithography and performing the corresponding simulations using the Ginzburg–Landau
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(written and spoken). Specific Requirements Key responsibilities include: Design, optimize, and execute high-throughput cell-based phenotypic screening strategies to biologically evaluate novel compounds and
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membranes using e.g. SAXS, microscopic, and fluorescence-based methods; Preparation of lipid nanostructures and design of surface-functionalized versions incorporating antimicrobial peptides (AMPs
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to strengthen practical and analyticalskills in materials chemistry, gain experience in combining experimental and theoretical approaches, and develop expertise in the design and characterization of functional
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for business. It cooperates with the largest national and international corporations. It conducts research of a European standard, develops new technologies and creates innovation in collaboration with
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microscopy system equipped with a SPAD array detector and an adaptive optics setup. Scope of tasks: Experimental work: participation in the construction, calibration, and alignment of the innovative