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risk factors associated to chronic diseases. Recently, the literature about metal/metalloids studied them as risk factors for chronic diseases in studies in urban areas. Objective: The objective
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, using Schottky diodes and metal–oxide–semiconductor (MOS) capacitors. The project focuses on the fabrication, electrical, and optical characterization of SiC-based devices, with emphasis on: • Fabrication
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molecular biology and bioinformatics for microRNA and gene expression analysis, including experimental validation and integration with target genes and biological pathways. Experience or interest in antibody
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sciences; experience in human genetic data analysis and bioinformatics applied to Neuroscience, preferably in Psychiatry, including genotyping or WES/WGS data; experience in genetic association studies (GWAS
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outcomes such as disease severity, viral load, and hospitalization. The project integrates immunology, virology, and quantitative analysis to understand mechanisms of antibody-mediated protection and support
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based on 2D magnetic materials and monolayer transition metal dichalcogenides (TMD). The researcher will be responsible for sample preparation of 2D magnetic heterostructures and investigating the impact
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simulation (Aspen Plus®); - Experimental experience in reaction systems and process intensification; - Ability to integrate modeling, experimental validation, and techno-economic analysis; - Experience in
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statistics and data analysis, bioinformatics, microbiology, and molecular biology. Interested candidates should send an email to Carla Taddei (crtaddei@usp.br ), a professor at ICB-USP and co-PI
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linked to the development of the following activities in this project: conducting cutting-edge research on Sustainability and Circular Economy, exploring innovative data analysis tools and theories
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; - Experience with data processing techniques. Desirable knowledge of methods such as Neighborhood Components Analysis (NCA), Locally Linear Embedding (LLE), and t-distributed Stochastic Neighbor Embedding (t-SNE