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to develop and analyse implementable, fully discrete methods for function approximation, density estimation, and/or time-dependent PDEs or SDEs in high dimensions, with links to UQ and theoretical
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industrial project, driven by Jungbunzlauer’s commitment to “Naturally Better ingredients”. You will design a scalable manufacturing process for a commercially important ingredient used across food and
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conventional analysis methods struggle. The work is inherently interdisciplinary, combining elements of experimental NMR, chemical kinetics, mathematical modelling, and computational data analysis, and the
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substantial interest in diverse industrial applications due to its potential for fabricating complex metal structures. This opportunity is centred around improving manufacturing productivity with advanced laser
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complex metal structures. This opportunity is centred around improving manufacturing productivity with advanced laser-matter interactions control and optimisation. The PhD will advance our comprehension
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Computer Science, Mathematics, or related areas. • Strong background in at least one of the following: formal methods, SMT solving, abstract interpretation, or model checking. • Experience with verification tools
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, nonlinear dynamical systems, robotics, and formal methods to develop principled models and algorithms for distributed decision-making in complex and uncertain environments. Your research The candidate will
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. This steam can accelerate coating degradation and loss of protection, reducing component lifespan and increasing lifecycle costs. Therefore, coatings with enhanced environmental resistance in hot-steam
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interactions among neighbouring agents and their environments. The research will exploit an interdisciplinary approach that combines control theory, nonlinear dynamical systems, robotics, and formal methods
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to environmental release and occupational exposure. In sectors such as wastewater treatment, food and beverage processing, and chemical manufacturing, contaminants like PFAS, hydrocarbons, and metal ions accumulate