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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
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interface between ESM and the latest version of SIESTA, its validation, its benchmarking, and its exploitation in scientific applications. Work will also involve the optimization of SIESTA on the fastest and