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of Applied Engineering is looking for a full-time (100%) doctoral scholarship holder in the field of Biomimetic Echolocation and Autonomous Aerial Robotics with a focus on the control of quadrotors
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, powder-controlled Directed Energy Deposition process (DED-LB) for metallic Functionally Graded Materials (FGMs). This advanced additive manufacturing technique allows complete three-dimensional design
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control based primarily on echolocation. Unlike prior UAV echolocation systems, which lack key biological features such as wideband sensing and HRTF-based spatial encoding, this project explicitly
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. Despite its potential, practical implementation remains challenging. There is a need for an improved and advanced mapping of the dose rates, inclusion of quality control and better staff tracking and
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GRaded Additive manufacturing through closed-loop Directed Energy Deposition process control (GRADΞD). Functionally Graded Additive Metals (FGAM) present unseen design and manufacturing opportunities
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bipedal robot that will learn to walk on soft and natural ground, such as sand and gravel. The controller design will include knowledge of the type of ground the robot walks over, and how the substrate
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electrochemical processes for power-to-x-to-power purposes. The team aims to improve the controllability, flexibility and energy efficiency of the reactions through electrocatalyst and electrochemical-cell design
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. General: You hold a Master's degree with distinction. You have an excellent command of English, both spoken and written. You are able to critically analyse theoretical texts and empirical studies, and you
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induction in local Musa breeding programs Identification and characterization of genetic factors controlling reductional meiotic division in Musa as a basis for developing innovative strategies to transiently
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between climate and tick habitat, making the evaluation of environmental control strategies complex. The links between vegetation and habitat must be reexamined in the context of climate change in view