{"id":2302,"date":"2023-04-04T10:00:26","date_gmt":"2023-04-04T10:00:26","guid":{"rendered":"https:\/\/fellowshipbard.com\/?p=2302"},"modified":"2023-04-02T14:13:29","modified_gmt":"2023-04-02T14:13:29","slug":"23-fully-funded-phd-programs-at-university-of-edinburgh","status":"publish","type":"post","link":"https:\/\/fellowshipbard.com\/23-fully-funded-phd-programs-at-university-of-edinburgh\/","title":{"rendered":"23 Fully Funded PhD Programs at University of Edinburgh, Scotland"},"content":{"rendered":"
Are you holding Master\u2019s degree and looking for fully funded PhD positions? University of Edinburgh, Scotland invites online application for multiple funded PhD Programs \/ fully funded PhD positions in various research areas.<\/span><\/p>\n Candidates interested in fully funded PhD positions can check the details and may apply as soon as possible. Interested and eligible applicants may submit their online application for PhD programs via the University\u2019s Online Application Portal.\u00a0<\/span><\/p>\n The proposed PhD research plan is to develop further a new methodology that can help combat the COVID-19 pandemic by remote microwave sterilization of surfaces and air particles using antenna radiation and wireless power transmission. The concept basically works like a conventional microwave oven where materials\/surfaces, etc. can be sterilized by radiating safe RF\/microwave energy. However, the new idea is to make this process remote, such that an operator, or self-managed system, could sterilize a room or ambulance (for example) with a simple hand-held device or air-conditioner unit, and whilst not even touching the infected surface, air particulates, or a handling of any harsh chemical cleaner. The methodology basically uses a liquid film layer to deactivate the corona virus and other pathogens by thermal heating.<\/span><\/p>\n Apply now<\/strong><\/span><\/a><\/p>\n In order to make autonomous technology a reality, detection of objects and vehicles requires accurate and a real-time response whilst employing clever radar signal processing techniques. The PhD research will work towards the design, implementation and testing of new RF antennas and electronics to support this every expanding industrial trend. In particular, high-resolution in angle is sought for the following applications: lane change assist, collision avoidance, and complete automobile self-driving. <\/span><\/p>\n Apply now<\/strong><\/span><\/a><\/p>\n <\/p>\n Follow FellowshipBard for daily updates! <\/span><\/strong><\/span><\/p>\n Facebook<\/span><\/strong><\/a><\/span><\/p>\n Twitter<\/span><\/strong><\/a><\/span><\/p>\n Linkedin<\/span><\/strong><\/a><\/span><\/p>\n Within the ESTEch Lab team, you will automatize and test a direct air capture laboratory-scale unit. We are looking for a person who can expand and gradually take the lead of the automation area of the ESTech Lab team. Expertise in Mechatronics is essential for this position. Previous knowledge in separation processes is less important since you are supported and supervised by the expertise of other researchers in the team, with the aim of learning the required knowledge by doing during the project development.<\/span><\/p>\n Apply now<\/strong><\/span><\/a><\/p>\n <\/p>\n This proposed PhD research will focus on synthesizing a new class of ultra-stable materials with tunable nanostructure and functionalities for efficient separations and\/or high-performance catalytic reactions, with special emphasis on enhancing their hydrothermal stability. Innovative synthetic strategies will be developed to create these nanostructured materials with enhanced transport properties and extraordinary hydrothermal stability.<\/span><\/p>\n Apply now<\/strong><\/span><\/a><\/p>\n In recent work we have shown that it is possible to create a surface smooth enough to halt heterogeneous crystallization and sessile droplets which are volumetrically stable even when the humidity well below the deliquescence limit. We also have preliminary evidence that these droplets can be forced to both shrink and grow by adjusting to the surrounding humidity. In this PhD you will study these stable droplets in controlled humidity and seek to understand the flows created by local concentration gradients within the droplet. You will also investigate the flow, and any deposition onto surfaces, when the droplets are both volumetrically stable and when they are condensing or evaporating.<\/span><\/p>\n Apply now<\/strong><\/span><\/a><\/p>\n <\/p>\n This EPSRC PhD Case Studentship research aims to develop hardware & software systems to improve industrial, scientific and environmental processes in the sea. This research will co-design, operate and assess new distributed sensing platforms to enable step-changes in the acquisition and interpretation of marine data. The data- provisioning network comprises sensor hardware, communicating sub-systems, data processing and integration with simulations and control systems.<\/span><\/p>\n Apply now<\/strong><\/span><\/a><\/p>\n This project aims to develop computational imaging algorithms for 3D image reconstruction from spectral X-ray CT (Spectral Photon Counting Computed Tomography) measurements. This new modality finds a wide range of applications and has significant advantages over its predecessor, and current state of the art: the scalar X-ray CT. Apart from an enhanced spatial resolution, the anatomical information it provides includes a characterisation of the chemical composition of the materials\/tissues within the imaged domain, thus enabling simultaneous image reconstruction and domain classification.<\/span><\/p>\n Apply now<\/strong><\/span><\/a><\/p>\n <\/p>\n The project will investigate power electronic architectures for the next generation of off-shore wind turbines. Research will address medium term challenges of exploiting of the completely different characteristics of SiC-MOSFET (compared to silicon IGBT) on choice of wind-turbine converter topology and connection voltage with the target of the most \/total cost optimised solution in ac-connected offshore wind turbines. Specific challenges such as high dv\/dt values and increased levels of radiated EMI that arise when using wide-bandgap semiconductors will be investigated, and solutions developed and experimentally tested. <\/span><\/p>\n Apply now<\/strong><\/span><\/a><\/p>\n <\/p>\n In this PhD project the student will develop advanced integrated electromagnetic-structural-thermal design tools for the modular air-cored SuperMachine concept, combining COMSOL with Machine Learning techniques. The focus will be on low speed multi-MW direct drive wind turbines, with the aim of demonstrating designs at greater than 15MW with a generator power density of 200 W\/kg or more. Funding is available to design, build and manufacture an air-cored superconducting module, which will be used to verify the design and modelling tools developed. The PhD student will have the opportunity to engage with industrial partners within the wind energy and superconducting sectors.<\/span><\/p>\n Apply now<\/strong><\/span><\/a><\/p>\n In your studies, you will research and develop a technology (sorption desalination) to use low temperature heat for the production of freshwater by exploiting recent innovations in material science and engineering. You will work in the Emerging Sustainable Technologies Laboratory (ESTech Lab), be part of a world leading research group in sustainable technologies towards the development of a proof-of-concept super-efficient processes for heat-powered desalination, have access to state-of-the-art equipment including rapid prototyping tools (e.g. 3D-printing) and brainstorm new technological avenues for desalination.<\/span><\/p>\n Apply now<\/strong><\/span><\/a><\/p>\n Sudden humidity swings are part of our daily life from natural or manmade occurrences. Human body temperature regulation works on the evapotranspiration of water through the skin, the relative humidity in a dishwasher usually swings from 30% to 100% and humidity changes between day and night are present in humid and dry areas alike. The swing between two relative humidity levels always corresponds to an energy change which is possible to harvest. In the past, three proof of principles experiments exploiting three different mechanisms have shown that it is possible to harvest energy from humidity but not beyond the generation of negligible powers. The present project looks beyond these results, exploits different chemical-physical schemes and aims at generating noticeable powers in a true engineering device.<\/span><\/p>\n1. Fully Funded PhD Position in Remote Destruction & Sterilization of the Coronavirus by RF\/Microwave Wireless Power Transmission<\/strong><\/span><\/h1>\n
Summary of PhD Program:<\/strong><\/span><\/h2>\n
Application Deadline:<\/strong> November 22, 2023<\/span><\/span><\/h3>\n
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2. <\/strong><\/span>Fully Funded PhD Position in RF Electronics and Radar Antenna Systems for Automotive Radar and other Related Scenarios<\/strong><\/span><\/h1>\n
Summary of PhD Program:<\/strong><\/span><\/h2>\n
Application Deadline:<\/strong> December 14, 2023<\/span><\/span><\/h3>\n
3. <\/strong><\/span>Fully Funded PhD Position in Mechatronics of Carbon Capture from the atmosphere<\/strong><\/span><\/h1>\n
Summary of PhD Program:<\/strong><\/span><\/h2>\n
Application Deadline:<\/strong> November 15, 2023<\/span><\/span><\/h3>\n
4. <\/strong><\/span>Fully Funded PhD Position in Hierarchical nanofabrication of smart and functional materials for energy efficient separations<\/strong><\/span><\/h1>\n
Summary of PhD Program:<\/strong><\/span><\/h2>\n
Application Deadline:<\/strong> August 20, 2023<\/span><\/span><\/h3>\n
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5. <\/strong><\/span>Fully Funded PhD Position in Flow inside supersaturated Saline droplets<\/strong><\/span><\/h1>\n
Summary of PhD Program:<\/strong><\/span><\/h2>\n
Application Deadline:<\/strong> November 18, 2023<\/span><\/span><\/h3>\n
6. <\/strong><\/span>Fully Funded PhD Position in Distributed and Intelligent Sensing for Ocean Research and Sustainable Ocean Enterprise<\/strong><\/span><\/h1>\n
Summary of PhD Program:<\/strong><\/span><\/h2>\n
Application Deadline:<\/strong> October 20, 2023<\/span><\/span><\/h3>\n
Looking For More Funded PhD Programs? Click Here<\/span><\/a><\/span><\/strong><\/span><\/h3>\n
7. <\/strong><\/span>Fully Funded PhD Position in Dictionary learning for Spectral Photon Counting Computed Tomography<\/strong><\/span><\/h1>\n
Summary of PhD Program:<\/strong><\/span><\/h2>\n
Application Deadline:<\/strong> May 10, 2023<\/span><\/span><\/h3>\n
8. <\/strong><\/span>Fully Funded PhD Position in Development of Next Generation Megawatt Scale Wind Energy Power Converters<\/strong><\/span><\/h1>\n
Summary of PhD Program:<\/strong><\/span><\/h2>\n
Application Deadline:<\/strong> May 31, 2023<\/span><\/span><\/h3>\n
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9. <\/strong><\/span>Fully Funded PhD Position in Machine Learning<\/strong><\/span><\/h1>\n
Summary of PhD Program:<\/strong><\/span><\/h2>\n
Application Deadline:<\/strong> April 17, 2023<\/span><\/span><\/h3>\n
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10. <\/strong><\/span>Fully Funded PhD Position in Desalination with low temperature heat<\/strong><\/span><\/h1>\n
Summary of PhD Program:<\/strong><\/span><\/h2>\n
Application Deadline:<\/strong> November 15, 2023<\/span><\/span><\/h3>\n
Looking For Funded Scholarships Programs? Click Here<\/span><\/span><\/strong><\/span><\/a><\/h3>\n
11. <\/strong><\/span>Fully Funded PhD Position in Conversion of humidity to electricity<\/strong><\/span><\/h1>\n
Summary of PhD Program:<\/strong><\/span><\/h2>\n
Application Deadline:<\/strong> November 15, 2023<\/span><\/span><\/h3>\n