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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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). The candidate should have proven experience in peptide synthesis, optimization, scale-up and characterization (Uv-vis, NMR, HPLC, mass spectrometry) and in vitro assays (cell cultures, cytotoxicity, liposome
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dedicated to optimizing the searches for high-frequency gravitational waves in a network of electromagnetic cavities, or other setups to be conceived during the project. All aspects, from source
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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 and optimization (specially Zn-based) Device and electrode engineering and their design. Preparation of nanomaterials (inorganic and/or organic) Characterization techniques for nanomaterials
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: Development and optimization in the acquisition protocol of novel MRI sequences Implementation of the specific analysis pipelines, from quality control to statistical analysis of the measured outcomes Writing
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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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plasticity. The successful candidate will: Implement and optimize molecular and biochemical approaches to characterize metabolic pathways associated with carbon storage and recycling in photosynthesis. Conduct
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knowledge. The focus of the project can be defined in collaboration with the supervisor, with potential avenues including optimization aspects, parameter-efficient adaptation methods, model merging theory
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valuable insights to help optimize device performance. Additionally, you will support collaborators by assisting with in-situ TEM measurements, facilitating cutting-edge research in sustainability and energy