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/LIF as well as fiber-optic and piezoelectric vibration sensors Investigate gas dispersion in different zones of the flotation cell by determining bubble size distributions (e.g., using optical probes
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the incorporation and further development of different measurement techniques (X-Ray radioscopy, ultrasound velocimetry, inductive flow tomography, temperature sensors) to detect the solidification front, temperature
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computationally perturbing chiral molecules by smoothly exchanging or adding functional groups or by replacing atoms with those of a different element to understand which changes in molecular structures or solvent
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algorithms Extend the superstructure to tackle AC-PF problems of different complexities and assess its convergence in inference Investigate scaling and performance bottlenecks Explore hybrid ML-classical
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engineering. Use cases will be defined within different manufacturing techniques of lightweight structures to enable novel development of materials and process design. The PhD position will be supervised by