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PhD Position Simulating the Airspace of the Future: Fleet & Network Optimization for Future Aircraft
models will form part of a larger simulation enviroment that evaluates the airspace of the future. The research should consider: Model development: + Characterizing the key performance differences between
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, inverse design, photonics, imaging systems, optionally also semiconductor devices, optoelectronics. Experience with optical characterization, nanofabrication, computational imaging, or detector technology
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PhD Position Simulating the Airspace of the Future: Fleet & Network Optimization for Future Aircraft
: Model development: + Characterizing the key performance differences between current and future aircraft models + Evaluating how these differences affect fleet assignment and network planning + Optimizing
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towards addressing the main challenges in the field by working on experiments involving integrated photonics and color center qubits. You will focus on device design and characterization, delving
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Experience, and Temporal and Experiential Characterization of Materials, developed within the research group. You will further expand this body of work by generating new knowledge, methods, and tools, with
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integrated photonics and color center qubits. You will focus on device design and characterization, delving into the complex physics of color centers, and developing technology based on integrated photonic
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recognised research in Material-Driven Design, Biodesign, Materials Experience, and Temporal and Experiential Characterization of Materials, developed within the research group. You will further expand
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Disease (VWD) This PhD project aims to comprehensively characterize variant Von Willebrand factor (VWF) proteoforms and uncover how these variants influence bleeding phenotypes, VWF trafficking, and