{"id":9392,"date":"2024-08-26T10:00:48","date_gmt":"2024-08-26T10:00:48","guid":{"rendered":"https:\/\/fellowshipbard.com\/?p=9392"},"modified":"2024-08-24T17:29:20","modified_gmt":"2024-08-24T17:29:20","slug":"30-fully-funded-phd-programs-at-eth-zurich-zurich-switzerland","status":"publish","type":"post","link":"https:\/\/fellowshipbard.com\/30-fully-funded-phd-programs-at-eth-zurich-zurich-switzerland\/","title":{"rendered":"30 Fully Funded PhD Programs at ETH Z\u00fcrich, Z\u00fcrich, Switzerland"},"content":{"rendered":"
Are you holding Master\u2019s degree and looking for fully funded PhD positions? ETH Z\u00fcrich, Z\u00fcrich, Switzerland 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 ETH Zurich is one of the world\u2019s leading universities specialising in science and technology. It is renowned for its excellent education, cutting-edge fundamental research and direct transfer of new knowledge into society. The Departement of Information Technology and Electrical Engineering is dedicated to world-class research and education in electrical engineering and electronic information processing, including biomedical engineering and brain research. Within the D-ITET, the Integrated Systems Laboratory (IIS) focuses on microelectronics, optoelectronics and nanotechnologies.<\/span><\/p>\n Apply now<\/strong><\/span><\/a><\/p>\n Have you ever dreamed of controlling chemical reactions using magnetic fields? With magnetoelectric composite nanoparticles acting as catalysts, this possibility has recently been demonstrated at ETH. In this PhD position, you would investigate the relationship between characteristics of magnetoelectric composite nanoparticles and the magnetic stimuli that we apply to them to trigger their catalytic effects. By leveraging this knowledge, we hope to further enhance their catalytic abilities.<\/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 Telegram Channel<\/span><\/strong><\/span><\/a><\/span><\/p>\n The Tissue Engineering and Biofabrication Laboratory (Prof. Marcy Zenobi-Wong) within the Department of Health Sciences & Technolgy (D-HEST) at ETHZ in Zurich, Switzerland, uses bioprinting to produce tissues which address unmet clinical needs. The laboratory has recently developed a light-based 3D printing technique, capable of creating topological cell guiding cues in large scaffolds (> centimeter scale) based on optical modulation instability effect and self-focusing effect on non-linear media (e.g., photosensitive resin). This allows for creating efficient cell guiding microstructures including microfilaments and microchannels in 3D hydrogel constructs within seconds.<\/span><\/p>\n Apply now<\/strong><\/span><\/a><\/p>\n <\/p>\n We are offering a fully-funded position for a motivated and talented individual to join our research team as a doctoral student and develop generative visual AI models for 3D data. This research opportunity is part of a collaborative project with our partners at Google Research, focusing on developing advanced visual AI models for multiview and 3D-consistent image generation. The successful candidate will have the opportunity to work on pioneering research in AI, contributing to both academic advancements and industry-leading innovations. The position is available from October 2024 onwards.<\/span><\/p>\n Apply now<\/strong><\/span><\/a><\/p>\n The existing power system operation architecture has organically grown over nearly a century, as new needs emerged, as technology and methods have advanced, and its recent development is also guided by the liberalisation of energy markets. In particular, energy balancing and frequency control nowadays rely on the classical three-level architecture of \u2013 sorted from seconds to hours \u2013 primary frequency control for stabilisation, secondary frequency control to regulate the frequency and area balancing error to a nominal value, and tertiary control to reschedule the grid operating point.\u00a0<\/span><\/p>\n Apply now<\/strong><\/span><\/a><\/p>\n <\/p>\n In this project, we aim to develop a novel protein bioengineering technology to develop robust and efficient biocatalysts, with the potential to become a universal tool to transform any enzyme\/cell into a more efficient biocatalyst. In reaching its goals, this project will not only consolidate but also expand the role of biocatalysis in industry, biomedicine, and biotechnology towards a more sustainable society.<\/span><\/p>\n Apply now<\/strong><\/span><\/a><\/p>\n <\/p>\n We will develop novel methods to generate 3D models for fabrication via 2D laser cutting, foldable paper, 3D printing, and a combination of them in conjunction with novel optimization-based computational methods for better fabrication outcomes. The research will be related to the areas of 3D modeling, computer graphics, digital fabrication, geometric processing, and geometry generation.<\/span><\/p>\n Apply now<\/strong><\/span><\/a><\/p>\n Recently, the commercialisation of low-cost, modular anaerobic digesters (also known as \u201cbiogas digesters\u201d or \u201cbiogas plants\u201d) has increased demand for this well-established, but far from optimised, technology. Much of the interest associated with the new systems comes from the need for the methane-rich biogas, which can be used as a sustainable source of cooking fuel. Components for pressurising, storing, and burning biogas have also become plentiful. However, the resulting effluent contains harmful concentrations of pathogens and must be treated further before it is safe for handling or disposal.<\/span><\/p>\n Apply now<\/strong><\/span><\/a><\/p>\n <\/p>\n The position focuses on the development of chemigenetic tools that combine synthetic fluorophores with genetically encodable components like self-labeling protein tags for application in cell biology. The work is highly interdisciplinary and collaborative, involving synthetic chemistry and\/or protein engineering as well as cell biology and fluorescence microscopy. The position is available from January 2025 onwards or earlier upon agreement.<\/span><\/p>\n Apply now<\/strong><\/span><\/a><\/p>\n We are seeking individuals with outstanding academic credentials and a high level of motivation to engage in doctoral research on the development of highly efficient future drive systems for electric vehicles with a battery system voltage exceeding 1 kV. In order to achieve high efficiency across a wide operating range, it is necessary to evaluate, model and optimise different four-level inverter topologies and suitable modulation schemes for drive systems. It is crucial to consider a wide operating range, given that the inverter is directly connected to the medium-voltage battery, which has a wide voltage range depending on the state of charge.\u00a0<\/span><\/p>\n Apply now<\/strong><\/span><\/a><\/p>\n The Laboratory for High Power Electronic Systems (HPE) at the Department of Information Technology and Electrical Engineering of ETH Zurich conducts internationally leading research on power electronic converter systems, which are required, for example, in future energy distribution systems for the integration of renewable energy sources or in traction applications\/electric mobility. Another research focus is on solid-state pulse modulators for medical applications (computer tomography\/cancer treatment) and accelerators (CERN).<\/span><\/p>\n Apply now<\/strong><\/span><\/a><\/p>\n1. Fully Funded PhD Position in Nanofabrication of Neuromorphic Devices<\/strong><\/span><\/h1>\n
Summary of PhD Program:<\/strong><\/span><\/h2>\n
Application Deadline:<\/strong> Open until filled<\/span><\/span><\/h3>\n
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2. <\/strong><\/span>Fully Funded PhD Position in Magnetoelectric Nanoparticles for Enhanced Catalysis<\/strong><\/span><\/h1>\n
Summary of PhD Program:<\/strong><\/span><\/h2>\n
Application Deadline:<\/strong> Open until filled<\/span><\/span><\/h3>\n
3. <\/strong><\/span>Fully Funded PhD Position in Biofabrication and 3D BioPrinting<\/strong><\/span><\/h1>\n
Summary of PhD Program:<\/strong><\/span><\/h2>\n
Application Deadline:<\/strong> Open until filled<\/span><\/span><\/h3>\n
4. <\/strong><\/span>Fully Funded PhD Position in Machine Learning for 3D Computer Vision<\/strong><\/span><\/h1>\n
Summary of PhD Program:<\/strong><\/span><\/h2>\n
Application Deadline:<\/strong> 31st of October 2024<\/span><\/span><\/h3>\n
Find Fully Funded PhD in UK<\/span><\/strong><\/span><\/a><\/h3>\n
5. <\/strong><\/span>Fully Funded PhD Position in Rethinking Frequency Control in Power Systems<\/strong><\/span><\/h1>\n
Summary of PhD Program:<\/strong><\/span><\/h2>\n
Application Deadline:<\/strong> Open until filled<\/span><\/span><\/h3>\n
6. <\/strong><\/span>Fully Funded PhD Position in Protein Chemistry and Biocatalysis<\/strong><\/span><\/h1>\n
Summary of PhD Program:<\/strong><\/span><\/h2>\n
Application Deadline:<\/strong> Open until filled<\/span><\/span><\/h3>\n
7. <\/strong><\/span>Fully Funded PhD Position in Digital Fabrication and Computational Optimization<\/strong><\/span><\/h1>\n
Summary of PhD Program:<\/strong><\/span><\/h2>\n
Application Deadline:<\/strong> Open until filled<\/span><\/span><\/h3>\n
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Find Fully Funded PhD in USA<\/span><\/strong><\/span><\/a><\/h3>\n
8. <\/strong><\/span>Fully Funded PhD Position in Sensing and Controlling the Large-Scale Anaerobic Digestion of Human Excreta to Minimize Health Risks and Carbon Emissions<\/strong><\/span><\/h1>\n
Summary of PhD Program:<\/strong><\/span><\/h2>\n
Application Deadline:<\/strong> 2024-09-30<\/span><\/span><\/h3>\n
9. <\/strong><\/span>Fully Funded PhD Position in Chemical Biology<\/strong><\/span><\/h1>\n
Summary of PhD Program:<\/strong><\/span><\/h2>\n
Application Deadline:<\/strong> 31st of August 2024<\/span><\/span><\/h3>\n
Find Fully Funded PhD in Europe<\/span><\/strong><\/span><\/a><\/h3>\n
\n10. <\/strong><\/span>Fully Funded PhD Position in modelling & optimising highly efficient drive systems for E-vehicles based on GaN devices<\/strong><\/span><\/h1>\nSummary of PhD Program:<\/strong><\/span><\/h2>\n
Application Deadline:<\/strong> Open until filled<\/span><\/span><\/h3>\n
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11. <\/strong><\/span>Fully Funded PhD Position in designing, modelling & optimising charging systems for E-vehicles based on GaN devices<\/strong><\/span><\/h1>\n
Summary of PhD Program:<\/strong><\/span><\/h2>\n
Application Deadline:<\/strong> Open until filled<\/span><\/span><\/h3>\n
Explore PhD Salary, Jobs, & Career Growth<\/span><\/strong><\/span><\/a><\/h3>\n
12. <\/strong><\/span>Fully Funded PhD Position in Learning from Observations and Experts for facilitating Decision Support for Wind Energy Structures<\/strong><\/span><\/h1>\n