retrieve:
Return the details about the given Event id.

list:
List all Event objects.

GET /api/v1/events/?format=api&offset=190&ordering=event__contact
HTTP 200 OK
Allow: GET, HEAD, OPTIONS
Content-Type: application/json
Vary: Accept

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            "id": 70819,
            "title": "Drawing Research Platform London 2026 - ENAC Summer Workshop",
            "slug": "drawing-research-platform-london-2026-enac-summe-2",
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            "start_date": "2026-08-16",
            "end_date": "2026-08-21",
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            "description": "<p>During a one-week Summer Workshop in Central London, students will explore drawing as a fundamental tool in architecture and engineering, engaging with the site as both a built environment and a historically transformed place. Developed in collaboration with Drawing Matter, London, the workshop integrates hands-on drawing with research into the Drawing Matter Collection, a unique archive of architectural drawings. <br>\r\n<br>\r\n<br>\r\n<strong>Project Team 2025</strong><br>\r\nDr. Patricia Guaita, architect, lecturer, IA ENAC EPFL<br>\r\nRaffael Baur, architect and external lecturer ENAC EPFL <br>\r\nNiall Hobhouse, collector and writer, Drawing Matter Director<br>\r\n <br>\r\n<strong>Invited expert</strong><br>\r\nMatthew Wells, Lecturer in Architectural Studies at University of Manchester <br>\r\n<br>\r\n<img alt=\"\" height=\"832\" src=\"//memento.epfl.ch/public/upload/fckeditorimage/40/0d/ed493c2f.jpg\" width=\"600\"></p>",
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            "creation_date": "2026-01-09T11:29:49",
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            "organizer": "Patricia Guaita, [email protected]",
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        {
            "id": 69477,
            "title": "Prof. Annalisa Buffa will be plenary speaker for the 2026 International Congress of Mathematicians (ICM 2026)",
            "slug": "prof-annalisa-buffa-will-be-plenary-speaker-for-th",
            "event_url": "https://memento.epfl.ch/event/prof-annalisa-buffa-will-be-plenary-speaker-for-th",
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            "start_date": "2026-07-23",
            "end_date": "2026-07-30",
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            "description": "<p>Prof. Annalisa Buffa will be plenary speaker for the 2026 International Congress of Mathematicians (ICM 2026) in Philadelphia, USA : https://www.icm2026.org/event/ac193975-5d24-4628-8c30-ddb23de19a8b/speakers</p>",
            "image_description": "",
            "creation_date": "2025-07-14T11:13:21",
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            "id": 71507,
            "title": "Genome-wide mapping of Transcription Factors' Footprints: Probing Noncoding Variants of Human Diseases",
            "slug": "genome-wide-mapping-of-transcription-factors-footp",
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            "start_date": "2026-05-08",
            "end_date": "2026-05-08",
            "start_time": "15:00:00",
            "end_time": "16:00:00",
            "description": "",
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            "creation_date": "2026-03-31T15:22:33",
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            "speaker": "<strong>Professor Xiaoliang Sunney Xie</strong><br>\r\nDirector of Changping Laboratory, Beijing, China<br>\r\nLee Shau Kee Chair Professor, Peking University, Haidian District, Beijing, China<br>\r\nhttps://www.cpl.ac.cn/en/Directors_Message/index.html ",
            "organizer": "Pr. Johan Auwerx",
            "contact": "Pr. Johan Auwerx: [email protected]",
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        {
            "id": 71316,
            "title": "Can effector T lymphocytes initiate cancer?",
            "slug": "can-effector-t-lymphocytes-initiate-cancer",
            "event_url": "https://memento.epfl.ch/event/can-effector-t-lymphocytes-initiate-cancer",
            "visual_url": "https://memento.epfl.ch/image/32671/200x112.jpg",
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            "lang": "en",
            "start_date": "2026-05-29",
            "end_date": "2026-05-29",
            "start_time": "13:30:00",
            "end_time": "14:30:00",
            "description": "<p>Abstract<br>\r\nAround 30% of cancers are preceded by chronic inflammation which occurs at the site where tumors will develop. However, whether this oncogenic process, particularly observed in the intestine, can be initiated by a specific immune cell population remains unknown. We recently identified two distinct effector T cell populations capable to initiate the oncogenic transformation of a healthy intestinal epithelium (Fesneau et al., Nat Immunol. 2024; Brewer et al., Nat. Rev. Canc. 2024), as well as the factors controlling their differentiation. By revealing the presence of tumorigenic T cells, this work opens a new field in oncology and immunology that will be key for both our understanding of the early steps of carcinogenesis and the development of prophylactic therapies against cancer.<br>\r\n<br>\r\n<br>\r\n<br>\r\n </p>",
            "image_description": "Prof. Julien Marie",
            "creation_date": "2026-03-06T11:49:19",
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            "speaker": "Prof. Julien MARIE, CRCL : Cancer Research Center of Lyon ",
            "organizer": "Prof. Daniel Constam",
            "contact": "Prof. Daniel Constam",
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        {
            "id": 71345,
            "title": "MechE Colloquium : Instability and breakdown phenomena in vortical flows",
            "slug": "meche-colloquium-instability-and-breakdown-pheno-2",
            "event_url": "https://memento.epfl.ch/event/meche-colloquium-instability-and-breakdown-pheno-2",
            "visual_url": "https://memento.epfl.ch/image/32805/200x112.jpg",
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            "lang": "en",
            "start_date": "2026-04-28",
            "end_date": "2026-04-28",
            "start_time": "12:00:00",
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            "description": "<strong>Summary</strong><br>\r\nVortical structures generated by fixed or rotating lifting surfaces play a central role in many aerodynamic and hydrodynamic flows. Their stability and eventual breakdown influence wake dynamics, mixing processes, and overall flow performance. This seminar presents two recent studies exploring vortex stability and vortex breakdown.<br>\r\nPart I – Short-wave instability of a helical vortex<br>\r\nThe first part of the seminar discusses the short-wave instability of a helical vortex generated by a rotating blade. Combining experimental dye visualisations, numerical simulations, and theoretical analysis, the study identifies displacement perturbations whose wavelengths are small relative to the helix radius and pitch but may remain large compared with the vortex core size. Stability analysis based on experimentally measured vortex profiles reveals broad bands of unstable wavenumbers for several vortex bending modes. These results differ from predictions of existing theories for short-wave vortex instability. Similar instability modes are also observed in arrays of straight vortices, indicating that the phenomenon is not related to vortex curvature. A theoretical examination of the dispersion relation of Kelvin modes for the measured vortex profiles uncovers a previously unidentified family of modes associated with the specific vorticity distribution. Their non-resonant interaction through the strain field provides a plausible explanation for the experimentally observed instability features.<br>\r\nPart II – Two-phase wing-tip vortex breakdown<br>\r\nThe second part presents the discovery of a new flow feature observed in the wake of a rectangular wing in water: the breakdown of the wing-tip vortex triggered by the injection of air into the vortex core downstream of the wing. Experiments show that, for certain combinations of Reynolds number and angle of attack, a stationary air bubble becomes trapped within the vortex core at a finite distance behind the wing and can persist for several minutes even after the air injection is stopped. Under different conditions, the bubble may drift upstream or downstream, or it may disintegrate immediately. Measurements of bubble properties and vortex characteristics reveal that the breakdown behaviour depends primarily on the vortex circulation and on the axial flow component within the core. The formation of a stable breakdown bubble occurs only when a velocity excess relative to the free stream is present.<br>\r\nThe two studies highlight new mechanisms governing the stability and transformation of vortical flows, offering insight into the dynamics of vortex instabilities and vortex-core modifications in fluid systems.<br>\r\n<br>\r\n<br>\r\n<strong>Biography</strong><br>\r\nThomas Leweke graduated from RWTH Aachen University in Germany in 1990 with a “Diplom” (Master) in Physics. He completed his PhD in 1994 at the Université de Provence in Marseille, on the experimental study and modelling of bluff-body wakes. After a post-doctoral stay at Cornell University on vortex instabilities, he joined the IRPHE institute in Marseille in 1996 as a CNRS Researcher and became a Senior Researcher in 2007. His research focusses on the experimental study of fundamental aspects of fluid mechanics, especially in vortex dynamics and fluid-structure interactions, with relevance to applications. He was the co-organiser of a conference series on Bluff-Boddy Wakes and Vortex-Induced Vibrations (BBVIV), and an associate editor for the Journal of Fluids and Structures and the Journal of Visualization",
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            "place_and_room": "MED 0 1418",
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            "speaker": "Prof. Thomas Leweke, IRPHE, CNRS, Marseille, France",
            "organizer": "MechE Colloquium",
            "contact": "Prof. Eunok Yim",
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            "keywords": "MechE Colloquium : phenomena in vortical flows",
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        {
            "id": 71528,
            "title": "Wave decay on slowly-rotating extremal Kerr-Newman black holes",
            "slug": "wave-decay-on-slowly-rotating-extremal-kerr-newman",
            "event_url": "https://memento.epfl.ch/event/wave-decay-on-slowly-rotating-extremal-kerr-newman",
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            "lang": "en",
            "start_date": "2026-05-22",
            "end_date": "2026-05-22",
            "start_time": "14:15:00",
            "end_time": null,
            "description": "<br>\r\nAbstract: <br>\r\nIn this talk, I will discuss the decay of solutions to the wave equation on slowly-rotating Kerr-Newman black holes. The behavior of waves on extremal spherically symmetric black holes and axisymmetric waves on rotational extremal black holes has seen remarkable recent developments. I will discuss how these developments can be extended to the case of slowly-rotating Kerr-Newman, highlighting the similarities between the structure of the wave operator at null infinity and the structure of the wave operator at the extremal horizon. <br>\r\n ",
            "image_description": "",
            "creation_date": "2026-04-01T19:39:32",
            "last_modification_date": "2026-04-01T19:44:53",
            "link_label": "",
            "link_url": "",
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            "speaker": "Dr Allen Fang, University of Muenster",
            "organizer": "Prof. Georgios Moschidis",
            "contact": "Prof. Georgios Moschidis",
            "is_internal": "False",
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        {
            "id": 71120,
            "title": "IMX Colloquium - Domain walls in multiferroics and multiferroic domain walls",
            "slug": "imx-colloquium-domain-walls-in-multiferroics-and-2",
            "event_url": "https://memento.epfl.ch/event/imx-colloquium-domain-walls-in-multiferroics-and-2",
            "visual_url": "https://memento.epfl.ch/image/32492/200x112.jpg",
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            "lang": "en",
            "start_date": "2026-04-20",
            "end_date": "2026-04-20",
            "start_time": "13:15:00",
            "end_time": "14:15:00",
            "description": "<p>A reason for the interest in multiferroics is that magnetic and electric orders do not simply exist side by side, but exhibit \"added value\" in the form of magnetoelectric interactions and functionalities between the ordered states. Likewise, in a ferroic material, regions with different orientation of the order parameter, the domains, do not simply exist side by side, but they exhibit new phases and properties in the domain walls. Because of their discontinuous, confined, and topological nature, domain walls exhibit functional states that are not possible in the bulk. Continuing this line of thought, one should expect domain walls in multiferroics to be a particularly rich source of novel phenomena. Here one must distinguish between (i) \"domain walls in multiferroics\", where only the ferroelectric (or magnetic) order is considered so that little is learned about the multiferroic state, and (ii) \"multiferroic domain walls\" where the ferroic phase coexistence of the wall itself is of interest. The latter are rarely studied, and I will discuss some of their intriguing features in my talk.<br>\r\n<br>\r\nBio: Professor Manfred Fiebig is known for his work in light-matter interaction in systems with strong electronic correlations. (Multi-) ferroics are of particular interest to him. After obtaining his doctoral degree in physics at the University of Dortmund, he worked at the University of Tokyo, the Max Born Institut Berlin, and the University of Bonn before he was appointed as Professor of Multifunctional Ferroic Materials in the Department of Materials at ETH Zurich in 2011. In 2021 he also became a member of the National Research Council of the Swiss National Science Foundation (SNSF), and he was elected as Corresponding Member of the Academy of Sciences and Literature | Mainz. Most recent distinctions include the 2022 APS Frank Isakson Prize for Optical Effects in Solids as well as the of the Stern Gerlach Medal in 2023, the highest distinction in Experimental Physics of the German Physical Society. He is one of the founders of the ETH Spinoff Company “3Wave Instruments”.</p>",
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            "creation_date": "2026-02-12T08:41:37",
            "last_modification_date": "2026-03-09T10:58:25",
            "link_label": "Website",
            "link_url": "https://mat.ethz.ch/department/people/person-detail.fiebig.html",
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            "speaker": "Prof. Manfred Fiebig, ETHZ",
            "organizer": "Prof. Gregor Jotzu, Prof. Fabien Sorin &amp; Prof. Esther Amstad",
            "contact": "Prof. Gregor Jotzu, Prof. Fabien Sorin &amp; Prof. Esther Amstad",
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