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tissues using nanoCT; characterization of fibrous biomaterial scaffolds, including porosity, fiber architecture and structural stability; standardization and computational analysis of biomedical imaging
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well as independently. The successful candidate will be involved in two activities involving synthesis, electrode design and advanced characterization of the materials for Li-ion and Na-ion bat-teries under two projects
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analysis of biological tissues using nanoCT; characterization of fibrous biomaterial scaffolds, including porosity, fiber architecture and structural stability; standardization and computational analysis
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to characterize forests and their biodiversity. The research will focus on developing multimodal learning approaches that combine complementary forest information across data sources, spatial scales, and time. A
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System Operation and Analysis (PSOA) at IEL, where we foster an open, inclusive, and collaborative working environment. Our working environment is characterized by a friendly, supportive atmosphere, with
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, or characterizing synthetic and manipulated visual content. Study representations learned by large pretrained visual or multimodal encoders, including probing, adaptation, fusion, and efficient fine-tuning strategies
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selection criteria Hands-on experience with one or more advanced characterization techniques such as SEM, EBSD, FIB, and TEM Prior knowledge/experience in hydrogen embrittlement A record of peer-reviewed
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made in accordance with NTNUs guidelines for recruitment positions for general criteria for the position. Preferred selection criteria Hands-on experience with one or more advanced characterization
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learning will be explored as enabling technologies for automated leakage detection and localization, analysis of complex measurements, fault-response characterization, intelligent exploration of large
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of the candidate is to fabricate and characterize wearable optical metasurfaces and photonic crystals. Main focus will be the understanding of the complex interactions of light with photonic devices as