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) and hosted at the Institute of Energy and Environment (IEE-USP). Applicants must have experience in atmospheric numerical modeling, climate data analysis, and extreme events. Applications must include
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an outer membrane core complex (OMCC), connected to the inner membrane complex (IMC). In minimized systems, the IMC includes VirB10, VirB3, VirB4, VirB6, and VirB8. While OMCC structures from expanded and
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staff position within a Research Infrastructure? No Offer Description Opportunity code: Postdoctoral (RL2_SP3_WP3.6) Area/Theme: “Thermo-Fluid Dynamic Models and Flow Assurance / Optimization
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, uncertainty, and digital platforms; - Methods: Gioia, Langley, Eisenhardt, CNA, QCA; structural equation modeling, neural networks; - Fluent communication in Portuguese and English is considered a plus. The
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(XRD) for structural analysis; • Dynamic light scattering (DLS) for particle size distribution and colloidal stability; • Magnetometry techniques (e.g., VSM, SQUID) for magnetic property evaluation
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or advanced statistical models. Solid experience in advanced programming in R and Python is also required. Applicants must have expertise in the following tools: - Git/GitHub; - API development; - IDEs such as
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, collective analytical exercises with the participation of the project networks. Applicants must demonstrate advanced knowledge in socio-anthropological research in health. Expertise in areas such as
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knowledge of cell biology and microbiology. Advanced knowledge of English (communication, reading, and writing) and the ability to work in a multidisciplinary team are desirable. In addition to the above
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with the main objectives of the projects, meaning he/she must: 1. Develop and optimize end plates for solid oxide fuel cells (SOFCs) using multiphysics topology optimization, aiming to ensure structural
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aims to structurally characterize a subcomplex of the type VI secretion system (T6SS) found in bacteria of the Xanthomonaceae family. For that, a combination of biochemical and structural biology