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through the group of Prof Tejpar will put the postdoc in an ideal position to understand how the stromal interactions change under current novel treatments and could be harnessed as future therapies. The
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sequencing and spatial transcriptomics data from active clinical trials through the group of Prof Tejpar will put the postdoc in an ideal position to understand how the stromal interactions change under
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, mathematical modelling of the leaf boundary layer conductance and its interactions wtih stomatal control and the leaf energy balance, and your own experimental data. You will follow state-of-the-art open science
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SD-25157 RESEARCHER IN ATMOSPHERIC PLASMA TREATMENT OF METALLIC SURFACES FOR INDUSTRIAL APPLICATIONS
the process at the industrial scale. The postdoctoral researcher is expected maintain close interactions with the industrial partner and report to them on a biweekly basis. The postdoctoral researcher
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data (e.g., Ethereum, Solana, Bitcoin, DeFi protocols) Strong programming skills in at least one relevant language (e.g., Python, R, Rust, JavaScript) Familiarity with smart contract interaction (e.g
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deliverables, reporting progress, and supporting technical documentation and consortium communication Representing the group in consortium meetings, and stakeholder interactions If you meet the required
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to the definition and implementation of use cases related to heat pumps vs. district heating and their interaction with other energy carriers (electricity, gas, hydrogen). Collaborating with the senior research
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community interaction Analyse trends and emerging practices in AI education, talent development, and lifelong learning Contribute to scientific publications, reports, and communication materials related
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to enable remote orchestration of energy systems. Working with RT-HIL environments (e.g. OPAL-RT, Typhoon) to validate cloud-controlled systems interacting with real hardware. Developing and testing scalable
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knowledge on leaf thermodynamic processes based on continued literature study, mathematical modelling of the leaf boundary layer conductance and its interactions wtih stomatal control and the leaf energy