{"id":11547,"date":"2024-05-08T09:00:02","date_gmt":"2024-05-08T09:00:02","guid":{"rendered":"https:\/\/notesbard.com\/?p=11547"},"modified":"2024-05-06T20:57:11","modified_gmt":"2024-05-06T20:57:11","slug":"27-fully-funded-phd-programs-at-university-of-twente-netherlands","status":"publish","type":"post","link":"https:\/\/notesbard.com\/27-fully-funded-phd-programs-at-university-of-twente-netherlands\/","title":{"rendered":"27 Fully Funded PhD Programs at University of Twente, Netherlands"},"content":{"rendered":"
If you’re a Masters degree holder and seeking Fully Funded PhD Programs, University of Twente, Netherlands has several online applications open for PhD programs. Explore the PhD opportunities across diverse research areas and submit your application soon.<\/span><\/p>\n Are you interested in doing lab experiments and field measurements to better understand and model grain-size effects on coastal nourishment morphodynamics? The Marine and Fluvial Systems group in the Civil Engineering and Management Department is looking for a motivated PhD researcher to strengthen our team. We are an active group of researchers pioneering at the interface of fundamental research in marine and fluvial system and nature-based solutions.<\/span><\/p>\n Application Deadline:<\/strong> 31 May 2024<\/span><\/p>\n View Details<\/span><\/strong><\/span><\/a><\/p>\n The vacancy is focused on calibration in deep learning. Deep Neural Networks (DNNs) have demonstrated significant predictive capabilities across various domains including computer vision, speech recognition, and natural language processing. Existing sophisticated neural network architectures are frequently integrated into practical applications. However, recent research has highlighted a crucial issue: despite their high accuracy achieved through training, deep neural networks often have overconfident and underconfident predictions. Deploying uncalibrated models in real-world systems poses substantial risks, particularly in safety-critical contexts like monitoring critical infrastructure systems. Calibrating deep learning models is essential to mitigate this risk, ensuring that the model’s posterior distribution accurately represents uncertainty without being excessively overconfident.<\/span><\/p>\n Application Deadline:<\/strong> 19 May 2024<\/span><\/p>\n View Details<\/span><\/strong><\/span><\/a><\/p>\n <\/p>\n Patients with end stage kidney disease (ESKD) need kidney replacement therapy (KRT) to survive, but current solutions (dialysis, kidney transplantation) are insufficient. The majority of ESKD patients is dependent on dialysis which places a heavy burden on their life. Removal of uremic toxins is inadequate, as all current dialysis therapies only mimic the filtration by kidney glomeruli, and do not replace any functionality of kidney tubules. BAKtotheFuture aims to develop a Bioartificial Kidney (BAK) that mimics tubular functionalities as an indispensable addition to current dialysis techniques.\u00a0<\/span><\/p>\n Application Deadline:<\/strong> 15 May 2024<\/span><\/p>\n View Details<\/span><\/strong><\/span><\/a><\/p>\n <\/p>\n In your project, you will do research on and apply machine learning techniques to make a real-world impact in academia and at financial institutions. A potential research topic is the design of an intelligent search bot that maximises AI technologies to improve the accessibility and user experience of public data portals. Further research will focus on ML techniques and NLP to improve supervisory technology (Suptech) methods. Both topics are relevant and of interest to the ECB and BIS, e.g. as part of their tool Olympus, that provides support in various areas, such as advanced analytics, process automation and digital collaboration.<\/span><\/p>\n Application Deadline:<\/strong> 5 Jun 2024<\/span><\/p>\n View Details<\/span><\/strong><\/span><\/a><\/p>\n <\/p>\n Climate change exacerbates the frequency and intensity of both floods and droughts. Despite widespread recognition that improving the water retention capacity of landscapes or sponge functioning is a suitable approach to increase society’s resilience to climate change and its effects, implementation of such approaches is still lagging. A key challenge is to mobilise and involve all relevant actors for the inclusive and integrative design and implementation of effective sponge measures and to translate long-term, regional river basin strategies to practical action perspectives. To address this challenge, this fully funded PhD position aims to develop approaches for inclusive, integrative and effective co-creation and knowledge production processes and to support their implementation processes.\u00a0<\/span><\/p>\n Application Deadline:<\/strong> 26 May 2024<\/span><\/p>\n View Details<\/span><\/strong><\/span><\/a><\/p>\n <\/p>\n <\/p>\n Under highly accelerated slip, several physical phenomena contribute to the dynamic friction behavior of mechanical systems. Understanding friction in grain (micro)-scale contacts is relevant to several industrial and geo-mechanical systems. For example, loss of friction and slip causes errors in highly accurate positioning stages in lithography. Earthquakes also occur due to sudden slip when the frictional strength of the crushed rock granules in geological faults is overcome.<\/span><\/p>\n Application Deadline:<\/strong> 12 May 2024<\/span><\/p>\n View Details<\/span><\/strong><\/span><\/a><\/p>\n <\/p>\n Competition for limited healthcare resources is a hallmark of any healthcare system. In practice, this translates into a waiting list problem: patients need to wait for a resource to become available, e.g. solid organ transplantation waiting lists and the associated staff and bed\/room space needed for the surgery and post-operative care. Compared to timely patient management, delayed interventions commonly result in loss of quality of life, or even death, and additional costs and burden to the healthcare system.<\/span><\/p>\n Application Deadline:<\/strong> 17 May 2024<\/span><\/p>\n View Details<\/span><\/strong><\/span><\/a><\/p>\n <\/p>\n We seek a PhD candidate who is passionate about mathematics education to engage in a project evaluating the affordances and constraints of different forms of automated and alternative assessment, comparing and contrasting assessment forms across mathematics courses and between courses in mathematics and other disciplines within the faculty and the UT. It is expected that the outcomes of the project will include practical implementation (or plans for implementation) of assessment reform which will have positive impact on teachers\u2019 workloads, while maintaining, or even improving, the quality of assessment.<\/span><\/p>\n Application Deadline:<\/strong> 22 May 2024<\/span><\/p>\n View Details<\/span><\/strong><\/span><\/a><\/p>\n <\/p>\n Artificial intelligence is increasingly being used in medical applications, supporting doctors and other medical professionals in their work, facilitating the analysis of medical images and other data, for more rapid, comprehensive and accurate diagnosis, guidance of surgeries and more. Today, deep learning methods are achieving excellent results on many medical imaging problems, resulting in highly accurate segmentation, recognition, classification, anomaly detection. However, they do not always generalize, meaning they fail when faced with a dataset from a different source (e.g. a different brand of scanner).<\/span><\/p>\n Application Deadline:<\/strong> 17 May 2024<\/span><\/p>\n View Details<\/span><\/strong><\/span><\/a><\/p>\n <\/p>\n Under the SPARKLES project can be watched via this link we are seeking an emerging scientist to conduct interdisciplinary and innovative research to investigate the impact of floating solar on aquatic biophysics and their role in altering the thermal and mass balances of inland waters. The main aim is to unravel how floating solar panels may affect water biophysics. To achieve this aim, you will work on identifying and measuring key radiometric and biophysical properties that characterize the solar panels and the water before and after the installation of the floating solar.\u00a0<\/span><\/p>\n Application Deadline:<\/strong> 19 May 2024<\/span><\/p>\n View Details<\/span><\/strong><\/span><\/a><\/p>\n <\/p>\n A PhD position is available at the chair of Precision Engineering at the Faculty of Engineering Technology of the University of Twente. We are seeking a highly motivated PhD student to join our team in developing mechanical alignment structures for photonic integrated circuits. Your work will contribute towards efficient chip-to-chip coupling, chip-to-wafer coupling and experimental testing strategies. You will become part of a team working on the development of various technologies for the alignment and coupling of integrated photonics. In particular, this PhD position is about efficient passive alignment of photonics chips. Your tasks in the project will range from the design of micro-mechanical kinematic couplings, on-chip mechanical features and flexure mechanisms for load application, to the characterization, tuning and experiment measurements of demonstrators.<\/span><\/p>\n1. Fully Funded PhD Position in grain-size effects on coastal nourishment morphodynamics<\/span><\/h1>\n
Summary of PhD Program:<\/span><\/strong><\/span><\/h2>\n
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2. Fully Funded PhD Position in Calibration in Deep Learning for Zero Downtime in Cyber-Physical Systems<\/span><\/h1>\n
Summary of PhD Program:<\/span><\/strong><\/span><\/h2>\n
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3. <\/span>Fully Funded PhD Position in Development of a BioArtificial Kidney device consisting of living membranes<\/span><\/span><\/h1>\n
Summary of PhD Program:<\/span><\/strong><\/span><\/h2>\n
4. <\/span>Fully Funded PhD Position in Machine Learning for Digital Fincance<\/span><\/span><\/h1>\n
Summary of PhD Program:<\/span><\/strong><\/span><\/h2>\n
5. <\/span>Fully Funded PhD Position in Facilitating the co-creation of sponge measures and strategies<\/span><\/span><\/h1>\n
Summary of PhD Program:<\/span><\/strong><\/span><\/h2>\n
Find More PhD Programs<\/span><\/a><\/span><\/h3>\n
6. <\/span>Fully Funded PhD Position in Micro-mechanics of dynamic friction in a single-grain contact<\/span><\/span><\/h1>\n
Summary of PhD Program:<\/span><\/strong><\/span><\/h2>\n
7. <\/span>Fully Funded PhD Position in value assessment of innovations in end-stage organ failure<\/span><\/span><\/h1>\n
Summary of PhD Program:<\/span><\/strong><\/span><\/h2>\n
8. <\/span>Fully Funded PhD Position in automated and alternate assessment in undergraduate mathematics<\/span><\/span><\/h1>\n
Summary of PhD Program:<\/span><\/strong><\/span><\/h2>\n
9. <\/span>Fully Funded PhD Position in Robust, Generalizable AI for Medical Imaging<\/span><\/span><\/h1>\n
Summary of PhD Program:<\/span><\/strong><\/span><\/h2>\n
10. <\/span>Fully Funded PhD Position in Remote Sensing of Aquatic Biophysics<\/span><\/span><\/h1>\n
Summary of PhD Program:<\/span><\/strong><\/span><\/h2>\n
Find More PhD Programs<\/span><\/a><\/span><\/h3>\n
11. <\/span>Fully Funded PhD Position in Mechanical Alignment Strategies for Photonic Integrated Circuits<\/span><\/span><\/h1>\n
Summary of PhD Program:<\/span><\/strong><\/span><\/h2>\n
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