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Field
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solutions that help move the world forward. QuTech At QuTech, we work on radically new technologies with world-changing potential. Our mission: to develop scalable prototypes of a quantum computer and a
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traffic demands increase, there is a growing need for innovative methods to continuously assess track condition and predict deterioration. This PhD project addresses this challenge by developing a novel
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for molecular magnetic materials lags behind these experimental breakthroughs. DFT fails to capture strong correlation, while wave function-based methods are computationally prohibitive for strongly-correlated
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PhD Position Simulating the Airspace of the Future: Fleet & Network Optimization for Future Aircraft
well before such aircraft enter service. This PhD project will help make this transition possible! The primary focus of this research will be on the development of new methods and models that efficiently
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PhD Position Simulating the Airspace of the Future: Fleet & Network Optimization for Future Aircraft
of this research will be on the development of new methods and models that efficiently couple new aircraft designs with new fleet allocation and schedule decisions. Such will enable airlines to minimize fleet-wide
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methods to study interactions between humans and the built environment. The lab provides a cutting-edge experimental platform that integrates immersive virtual environments with a state-of-the-art climate
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, reliability, and operational performance. As railway infrastructure ages and traffic demands increase, there is a growing need for innovative methods to continuously assess track condition and predict
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microbiome analysis; sequencing technologies and analysis of sequencing data; PCR and TaqMan-based assays; molecular biological and microbiological laboratory methods; basic programming or bioinformatics; and
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. For this purpose we envisage advanced electricity based methods. As the process is aimed to be operated at large scale, the reactor technology to be selected is to be scalable. At TU Delft within the department
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products. At NTNU, a central part of the project is the development of more predictable and efficient methods for the refactoring and heterologous expression of biosynthetic gene clusters (BGCs). The PhD