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journals. • Excellent written and verbal communication skills in English. • Ability to work independently as well as collaboratively within an interdisciplinary and international research team. Who we
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different feedstock compositions and processing conditions influence performance, and to evaluate the ability of the models to serve as robust tools for dynamic recipe design in real production environments
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. Excellent written and oral communication skills in English. Strong quantitative, analytical, and problem-solving skills. Ability to work both independently and collaboratively in an interdisciplinary and
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, computer science, interaction design, applied artificial intelligence, or a related field. We welcome candidates from diverse backgrounds, demonstrating strong collaboration skills and the ability to acquire
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. They include high-temperature, high-power applications, including heat pumps, thermal storage, and complex process units, where both physical understanding and intelligent control are essential. What you will do
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computation. Familiarity with both topics is a definite benefit, but not a strict requirement. The position requires a solid mathematical skill set and the ability to formally analyse and prove properties
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practice-oriented environments. The ability to navigate these settings is important, as the project involves ongoing interaction with organizations undergoing strategic transition. The successful candidate
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methods in practice. This includes the ability to design, implement, and critically reflect on computational approaches such as machine learning models, large language models, and/or advanced data
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dynamics, naval architecture or high-speed craft design. Experience with propellers, waterjets, thrusters, marine power systems, propulsion modelling or experimental marine platforms is highly valued
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cells, electrolysis, power-to-x, batteries, and carbon capture. The research is based on strong competences on electrochemistry, atomic scale and multi-physics modelling, autonomous materials discovery