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(at least 3 months). Experience in development and optimization of lipid nanoparticles. Experience in cell cultures and nanoparticle assays. Experience in in vitro models of ocular tolerance. Experience in in
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to collaborate closely with computational designers to optimize and characterize novel enzymes. Where to apply Website https://apps.udg.edu/contractacioPDI/account/login.aspx?id=recerca&tipus=recerc… Requirements
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project reporting; ensure optimal use of resources and smooth day-to-day operations. Mentorship and Training: Guide PhD students, postdocs, and technicians in experimental methods and good laboratory
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is appropriated enough, an interview will be performed Additional comments Additional requirements: Ability to independently design, plan and conduct experimental research activities Optimization and
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candidate to work on the development and optimization of surface coatings for bioresorbable coils. The project aims to develop a bioresorbable metallic and/or polymeric coils for the embolization
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spectroscopic techniques [Two-Dimensional Electronic Spectroscopy (2DES), Transient Absorption, and Transient Fluorescence (with a Streak camera)]. To run, maintain in good condition and optimize when needed
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properties. In particular, we will explore the non-linear effects of chiral materials and their rectifying properties at high frequencies. The project also foresees the integration of optimal working materials
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also foresees the integration of optimal working materials together with functional 5G antennas. The research to be performed will require the synthesis of chiral materials, both based on Tellurium and
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generative models, optimization tasks, or other specific applications. The candidate will work in the context of the project ML-QSIM, a 4-year, 2M€ project funded by the Spanish Government, within a
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development of biosensors Optimize novel aptamer beacon platforms Characterization with electrochemical techniques such as cyclic voltammetry, differential pulse voltammetry, square wave voltammetry, impedance