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have proved to be efficient in many applications such as image and video reconstruction. However, the same issue arises, tensor completion methods can not be directly applied to recover the links
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, code, and results. Contribute to the preparation of research papers, reports, and presentations to share findings with the scientific community and project stakeholders. Experience and Qualifications: A
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develop and sustain your own research team. Access to state-of-the-art core facilities, including: Genomics and transcriptomics platforms Medical imaging platform Animal research facility Bioinformatics and
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data for model calibration and validation. Apply sensitivity analysis and optimization algorithms to refine model parameters and improve predictive accuracy. Contribute to code development, documentation
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, FTIR, DLS). Knowledge of applications of magnetic nanoparticles in areas such as drug delivery, imaging, catalysis, or environmental remediation is a plus. Strong problem-solving skills, ability to work
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chemistry. Hands-on experience with material characterization tools (e.g., TEM, SEM, XRD, VSM, FTIR, DLS). Knowledge of applications of magnetic nanoparticles in areas such as drug delivery, imaging
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, code, and results. Contribute to the preparation of research papers, reports, and presentations to share findings with the scientific community and project stakeholders. Experience and Qualifications: A
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parameters and improve predictive accuracy. Contribute to code development, documentation, and publication of research outcomes in peer-reviewed journals. Candidate Profile: Ph.D. in Mechanical Engineering
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links (ORCID, GitHub). Research statement (1–2 pages) with a 12–18 month plan. Up to 3 representative papers and links to code/datasets (if available). 2–3 referee contacts. Selection & timeline (brief
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papers and links to code/datasets (if available). 2–3 referee contacts. Selection & timeline (brief) Shortlist based on research fit, technical skills, and interdisciplinarity. Top candidates invited for a