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to establish a novel wireless plant-based communication system, using plants as natural antennas, uniquely powered by the integration of plant-microbial electricity generation seamlessly blended
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understanding of AI security. Collaborate with academic partners and the research community to advance the state-of-the-art in adversarial robustness and trustworthy AI systems. Minimum Qualifications PhD in
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, biochemical and biological compounds able to selectively generate apoptosis in primary brain tumors. ESSENTIAL REQUIREMENTS A PhD in nanotechnologies, physics, engineering, or related disciplines Previous
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Expression and validation of recombinant proteins in neuronal systems Engineering and functional testing of neuronal molecular switches Supervision and mentoring of Bachelor’s, Master’s, and PhD students
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cancer and developing innovative biomarkers for early detection and patient stratification. ⸻ Required Qualifications • PhD in a relevant field (e.g., Molecular Biology, Genetics, Bioinformatics
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exploit latent spaces to discover meaningful patterns and unlock new insights from complex biomedical data. The postholders will work in a multidisciplinary environment collaborating with geneticists
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for MS and metabolomics data analysis and member of the Bioconductor Community Advisory Board. The Institute for Biomedicine is home to an international and interdisciplinary team of scientists, students
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, communication algorithms) Parallel programming models and runtimes for emerging architectures (e.g., processing-in-memory, SRAM-centric) Performance modelling & optimisation of ML algorithms on unconventional
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(metabolic profiling) to generate unique chemical signatures for selected MAP species. This work is critical for quality control, detecting adulteration, and establishing clear relationships between chemotype
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boundaries of ICT electronic devices and systems and pave the way for the development of novel Quantum Technologies. Within the research team, your main responsibilities will be: To synthesize the transition