retrieve:
Return the details about the given Event id.

list:
List all Event objects.

GET /api/v1/events/?format=api&offset=170&ordering=event__organizer
HTTP 200 OK
Allow: GET, HEAD, OPTIONS
Content-Type: application/json
Vary: Accept

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            "id": 71001,
            "title": "Gestion de projet européen - Projets ERC et MSCA",
            "slug": "gestion-de-projet-europeen-projets-erc-et-msca-2",
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            "start_date": "2026-11-26",
            "end_date": "2026-11-26",
            "start_time": "09:30:00",
            "end_time": "12:00:00",
            "description": "<p>Programmes-cadres européens de la recherche et de l’innovation.<br>\r\n<br>\r\nVotre laboratoire participe à un ou plusieurs projets européens et une de vos missions est d’en assurer une gestion efficace au niveaux administratif, financier et celui des ressources humaines ? Pour cela, il est important de prendre le temps de vous familiariser avec la structure de ces projets et avec certaines règles de gestion qui leurs sont spécifiques.<br>\r\n<br>\r\nCette formation vous propose de prendre connaissance des documents contractuels et de leur contenu qui est utile pour votre gestion. Les règles de gestion administrative, financière et RH seront présentées et discutées en se basant sur des cas pratiques.<br>\r\nLa formation permettra aussi aux participants de se familiariser avec le portail européen et la plateforme de reporting du SEFRI.<br>\r\n<br>\r\nIl est recommandé de suivre cette formation le plus tôt possible, idéalement vers le commencement du projet.</p>",
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            "creation_date": "2026-01-30T10:11:14",
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            "id": 71376,
            "title": "EPFL Latsis Symposium 2026: “Decoding the Cell: Modeling, Predicting, and Engineering Cellular States”",
            "slug": "epfl-latsis-symposium-2026-decoding-the-cell-model",
            "event_url": "https://memento.epfl.ch/event/epfl-latsis-symposium-2026-decoding-the-cell-model",
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            "start_date": "2026-10-29",
            "end_date": "2026-10-30",
            "start_time": null,
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            "description": "<p>The <strong>EPFL Latsis Symposium 2026<em>: “Decoding the Cell: Modeling, Predicting, and Engineering Cellular States”</em></strong> will be held on <strong>October 29-30, 2026</strong>, at the <strong>Olympic Museum in Lausanne</strong>.<br>\r\n<br>\r\nThis international gathering will bring together leading scientists in single-cell analysis, computational modeling, and cellular engineering to explore how recent breakthroughs in multi-omics technologies, predictive algorithms, and synthetic biology are reshaping our understanding of cellular function.<br>\r\n<br>\r\nThrough interdisciplinary talks and discussions, the symposium will spotlight advances in single-cell multi-modal data integration, predictive modeling of cell identity and behavior, and the engineering of synthetic cell states. By connecting researchers across experimental and computational domains, the event aims to establish new conceptual and technological frameworks for modeling and controlling cellular systems.<br>\r\n<br>\r\nHosted by <strong>EPFL</strong>, the symposium will foster scientific exchange, spark new collaborations, and accelerate progress toward next-generation cell-based therapies, disease models, and synthetic biological innovations.<br>\r\n<br>\r\nJoin us in Lausanne to connect with the global community shaping the future of cell understanding and engineering.<br>\r\n<br>\r\n<strong>SPEAKERS:</strong><br>\r\n•    <strong>Gray Camp</strong> – Research Group Leader at the Roche Institute for Translational Bioengineering (ITB) in Basel<br>\r\n•    <strong>Barbara Engelhardt</strong> – Senior Investigator, Gladstone Institutes &amp; Professor, Department of Biomedical Data Science at Stanford University<br>\r\n•    <strong>Jeremy Gunawardena</strong> – Professor, Department of Medicine and Life Sciences (MELIS), Pompeu Fabra University, Barcelona<br>\r\n•    <strong>Muzlifah Haniffa</strong> – Head of the Cellular Genomics Programme and Deputy Director of the Wellcome Sanger Institute and Professor of Clinical Dermatology at the University of Cambridge<br>\r\n•    <strong>Anshul Kundaje</strong> – Associate Professor of Genetics and Computer Science at Stanford University<br>\r\n•    <strong>Prisca Liberali </strong>– Professor at the Department of Biosystems Science and Engineering, ETHZ &amp; Senior Group Leader at the Friedrich Miescher Institute for Biomedical Research<br>\r\n•    <strong>Ewa Paluch</strong> – Professor of Anatomy in the Department of Physiology, Development and Neuroscience and Fellow of Trinity College at the University of Cambridge<br>\r\n•    <strong>Steve Quake</strong> – Professor of Bioengineering and Applied Physics, Stanford University<br>\r\n•    <strong>Sussane Rafelski</strong> – Sr. Director, Quantitative Biology at the Allen Institute for Cell Science<br>\r\n•    <strong>Kevin Tsia</strong> – Professor in the Department of Electrical and Electronic Engineering and the Program Director of the Biomedical Engineering Program at the University of Hong Kong<br>\r\n•    <strong>Bo Wang</strong> – Chief AI Scientist, Vector Institute &amp; Assistant Professor, University of Toronto<br>\r\n<br>\r\nGenerously supported by\r\n</p><div class=\"wp-block-image\"><img alt=\"\" decoding=\"async\" height=\"147\" sizes=\"(max-width: 343px) 100vw, 343px\" src=\"https://www.epfl.ch/labs/deplanckelab/wp-content/uploads/2025/11/Fondation-Latsis-logo.png\" srcset=\"https://www.epfl.ch/labs/deplanckelab/wp-content/uploads/2025/11/Fondation-Latsis-logo.png 343w, https://www.epfl.ch/labs/deplanckelab/wp-content/uploads/2025/11/Fondation-Latsis-logo-300x129.png 300w\" width=\"343\"></div>",
            "image_description": "In a galaxy not so far, far away… Jakob J. Langer, Postdoctoral researcher, Lutolf Lab.",
            "creation_date": "2026-03-13T14:52:09",
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            "link_url": "https://latsis2026.epfl.ch/event/1/",
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            "organizer": "LATSIS Symposium 2026 Organizing Committee:<br>\r\nProf. Bart Deplancke, Prof. Maria Brbić and Prof. Giovanni D’Angelo",
            "contact": "<a href=\"mailto:[email protected]\">[email protected]</a>",
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        {
            "id": 71919,
            "title": "MEchanics GAthering –MEGA- Seminar: Navigating the shift from academia to the industrial sector",
            "slug": "mechanics-gathering-mega-seminar-navigating-the-sh",
            "event_url": "https://memento.epfl.ch/event/mechanics-gathering-mega-seminar-navigating-the-sh",
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            "lang": "en",
            "start_date": "2026-05-28",
            "end_date": "2026-05-28",
            "start_time": "13:05:00",
            "end_time": "14:00:00",
            "description": "<strong>Abstract:</strong> What does it mean to move from an academic career into industry after a PhD or postdoctoral experience? Which skills transfer naturally, which challenges emerge along the way, and how can scientists prepare for the shift?<br>\r\nIn this seminar, two speakers from different scientific backgrounds will share their personal journeys from academia to industry.They will offer honest, complementary perspectives on leaving university research, exploring the practical realities, challenges, and distinct working cultures of the industry sector.<br>\r\nThrough their experiences, participants will gain practical insights into recruitment processes, workplace expectations, and the opportunities available to scientists in industry.<br>\r\n<br>\r\n<strong>Tristans's Bio: </strong>I got a PhD in aeronautical Engineering in 2011 from KTH, Stockholm, Sweden, with a thesis on Aerodynamics simulations of ground vehicles in unsteady crosswind.<br>\r\nAfter this, I worked with various Formula One teams from 2012 to 2025, starting as a CFD Engineer and moving to an Aerodynamicist role in 2014. Between 2022 and 2025, I have been involved in the development of the British Challenger for the 37th America’s Cup (iconic Yacht competition), leading the Fluid Dynamics team towards the end.<br>\r\nSince summer 2025, I am a scientist at LFMI on a FNS funded project “Why do albatrosses and pelicans morph to an arch-shaped wing configuration when gliding near the water surface?”.<strong> <br>\r\n<br>\r\nBertrand's Bio: </strong>After completing an Aerospace Engineering degree from ISAE-SUPAERO (Toulouse, France) and Université de Toulouse, where I specialized on Earth observation, numerical modeling and climate science, I completed my PhD at Météo-France's Center for Snow Studies (CEN, Grenoble, France). I worked for four years as a postdoc at the Snow and Avalanche Research Lab (SLF, Davos, Switzerland), at the interface between research and operational flood forecasting. Since 2025, I joined Hydrique Ingénieurs, in Lausanne, where I do numerical modeling for various projects related to water resources management and flood forecasting.<br>\r\n<br>\r\nThe talk will be followed by an informal apero!<br>\r\n ",
            "image_description": "",
            "creation_date": "2026-05-21T15:33:37",
            "last_modification_date": "2026-05-22T16:07:51",
            "link_label": "",
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            "canceled": "False",
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            "place_and_room": "ME B1 10",
            "url_place_and_room": "https://plan.epfl.ch/?room==ME%20B1%2010",
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            "speaker": "<a href=\"https://people.epfl.ch/tristan.favre?lang=en\">Tristan Favre</a> (<a href=\"https://lfmi.epfl.ch/\">LFMI</a>, EPFL), Bertrand Cluzet (<a href=\"https://hydrique.ch/fr\">Hydrique Ingénieurs</a>)",
            "organizer": "MEGA.Seminar Organizing Committee",
            "contact": "<a href=\"http://[email protected]/\">Aliénor Riviere</a>, <a href=\"http://[email protected]/\">Danick Lamoureux</a>, <a href=\"http://[email protected]/\">Jacopo Bilotto</a>",
            "is_internal": "False",
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                "en_label": "Free"
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            "keywords": "Career Development, Transferable Skills",
            "file": null,
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        {
            "id": 71892,
            "title": "Bacterial Immune Systems: From Molecular Mechanisms to Next-Generation Biotechnology",
            "slug": "bacterial-immune-systems-from-molecular-mechanisms",
            "event_url": "https://memento.epfl.ch/event/bacterial-immune-systems-from-molecular-mechanisms",
            "visual_url": "https://memento.epfl.ch/image/33210/200x112.jpg",
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            "lang": "en",
            "start_date": "2026-05-26",
            "end_date": "2026-05-26",
            "start_time": "12:15:00",
            "end_time": "13:15:00",
            "description": "<p>Immense evolutionary pressure has driven bacteria to innovate a diverse arsenal of immune systems that defend against parasitic mobile genetic elements, including bacteriophages and plasmids. The study of these systems has proven extraordinarily fruitful for biotechnology: CRISPR-Cas9, originally discovered as a bacterial defense mechanism, has revolutionized genome editing and demonstrated the transformative potential of mining bacterial immunity for molecular tools.<br>\r\nYet the diversity of bacterial defense extends far beyond CRISPR. Bacteria have evolved numerous strategies to recognize and destroy foreign DNA, many of which remain poorly understood at the mechanistic level. A central question is how these systems distinguish self from non-self — and how the underlying molecular logic of DNA targeting is encoded in protein structure and biochemistry. We combine cryo-electron microscopy, quantitative biochemistry, and in vivo genomics to characterize newly discovered defense systems and dissect their targeting mechanisms. This work is revealing unexpected principles of foreign DNA recognition, with implications both for our understanding of bacterial immunity and for the development of next-generation biotechnological tools for genome editing and beyond.</p>",
            "image_description": "Bravo",
            "creation_date": "2026-05-18T10:59:28",
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            "link_label": "",
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            "speaker": "Jack Bravo, Institute of Science and Technology Austria (ISTA)",
            "organizer": "Melanie Blokesch",
            "contact": "[email protected]",
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            "theme": "",
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        {
            "id": 71903,
            "title": "Computer-aided proofs in first-order optimization, with applications to error feedback",
            "slug": "computer-aided-proofs-in-first-order-optimization",
            "event_url": "https://memento.epfl.ch/event/computer-aided-proofs-in-first-order-optimization",
            "visual_url": "https://memento.epfl.ch/image/33221/200x112.jpg",
            "visual_large_url": "https://memento.epfl.ch/image/33221/720x405.jpg",
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            "lang": "en",
            "start_date": "2026-05-29",
            "end_date": "2026-05-29",
            "start_time": "15:15:00",
            "end_time": "16:15:00",
            "description": "<p>First-order methods are widely used in optimization and machine learning, and their behavior is often analyzed through the spectrum of worst case convergence rates. Obtaining such guarantees is often difficult and both time consuming and error-prone. Starting with the work of Drori and Teboulle (2014), novel techniques have been used to gain numerical insights, leading to the release of various performance estimation (PE) software. <br>\r\n<br>\r\nIn this talk, I will show how various computer-aided techniques can be used to study first-order optimization methods in a systematic way. From performance estimation problems with automated Lyapunov discovery, to symbolic regression and computer algebra systems, novel tools completely reshape the way we approach theory of optimization. <br>\r\nAs a main example, I will focus on error feedback methods used with compressed communication in distributed optimization. While error feedback has been widely studied, existing theory often provides untight (thus unreliable)  bounds. I will present tight analyses with matching lower bounds that allow a fair comparison between error feedback schemes and standard compressed gradient descent, and help explain when error feedback is useful and when it is not.<br>\r\n<br>\r\nOverall, the talk aims to show how various computer-aided proofs can lead to clearer and more reliable insights into first-order optimization methods.<br>\r\n<br>\r\nBased on :<br>\r\n<a href=\"https://icml.cc/virtual/2026/poster/62713\" target=\"_blank\">A Tight Theory of Error Feedback Algorithms in Distributed Optimization,</a> DB Thomsen, A Taylor, A Dieuleveut<br>\r\nInternational Conference on Machine Learning (ICML 2026)<br>\r\n<a href=\"https://scholar.google.com/citations?view_op=view_citation&amp;hl=fr&amp;user=ge-OinUAAAAJ&amp;sortby=pubdate&amp;citation_for_view=ge-OinUAAAAJ:q3oQSFYPqjQC\" target=\"_blank\">Tight analyses of first-order methods with error feedback</a>, DB Thomsen, A Taylor, A Dieuleveut<br>\r\nAdvances in Neural Information Processing Systems (NeurIPS) (2025).<br>\r\n<a href=\"https://scholar.google.com/citations?view_op=view_citation&amp;hl=fr&amp;user=ge-OinUAAAAJ&amp;sortby=pubdate&amp;citation_for_view=ge-OinUAAAAJ:L8Ckcad2t8MC\" target=\"_blank\">PEPit: computer-assisted worst-case analyses of first-order optimization methods in Python</a><br>\r\nB Goujaud, C Moucer, F Glineur, JM Hendrickx, AB Taylor, A Dieuleveut<br>\r\nMathematical Programming Computation 16 (3), 337-367  (2024)<br>\r\n(eventually - as a detour) <a href=\"https://scholar.google.com/citations?view_op=view_citation&amp;hl=fr&amp;user=ge-OinUAAAAJ&amp;sortby=pubdate&amp;citation_for_view=ge-OinUAAAAJ:wbdj-CoPYUoC\" target=\"_blank\">Provable non-accelerations of the heavy-ball method</a> B Goujaud, A Taylor, A Dieuleveut, Mathematical Programming, 1-59  (2025)<br>\r\n </p>",
            "image_description": "",
            "creation_date": "2026-05-19T09:20:45",
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            "speaker": "Aymeric Dieuleveut, Ecole Polytechnique, Institut Polytechnique de Paris",
            "organizer": "Myrto Limnios    ",
            "contact": "Maroussia Schaffner",
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        {
            "id": 71699,
            "title": "Lausanne Scaleup Cruise 2026",
            "slug": "lausanne-scaleup-cruise-2026-2",
            "event_url": "https://memento.epfl.ch/event/lausanne-scaleup-cruise-2026-2",
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            "start_date": "2026-06-10",
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            "description": "<p>The <a href=\"https://luma.com/2bhtvuhp\">2026 Romandie Scaleup Cruise</a> will bring the <a href=\"https://www.swisspreneur.org/\">Swisspreneur</a> community together on <strong>June 10</strong> for an evening dedicated to meaningful conversations, high‑value connections and the vibrant energy of the Romandie startup ecosystem.<br>\r\n<br>\r\n<strong>For Whom</strong><br>\r\nThis edition is curated for established founders, experienced entrepreneurs, active investors and ecosystem leaders shaping Switzerland’s innovation landscape.<br>\r\n<br>\r\n<strong>Event Highlights</strong>\r\n</p><ul>\r\n\t<li><strong>Warm‑up apéro</strong> at The Lacustre</li>\r\n\t<li><strong>Curated table rotations</strong> to spark deeper exchanges</li>\r\n\t<li><strong>Table Captains</strong> leading intimate, high‑quality discussions:\r\n\t<ul>\r\n\t\t<li>Patrick Thévoz (Flyability)</li>\r\n\t\t<li>Vincent Bieri (Nexthink)</li>\r\n\t\t<li>Michael Friedrich (Distalmotion)</li>\r\n\t</ul>\r\n\t</li>\r\n</ul>\r\n<strong>Details</strong><br>\r\n<br>\r\n<a href=\"https://luma.com/2bhtvuhp\">Full program and registration here</a><br>\r\n<strong>EPFL 20% code of disccount - </strong>EPFL20",
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            "id": 70859,
            "title": "Prototype Pavilion in Textile Reinforced Concrete with LC3 2026_ ENAC Summer Workshop",
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            "description": "<p>The project aims to further investigate the structural, architectural, environmental, and social dimensions of TRC and its applications, particularly in the context of a new Multi-Purpose Space for the Department of Architecture &amp; Interior Design Kenyatta University Campus, Nairobi, Kenya in collaboration with Urko Sanchez Architects. The space is intended to support academic, social, and experimental activities while serving as a living laboratory for sustainable and alternative construction methods. The pavilion should function not only as a usable academic space but also as a pedagogical tool, demonstrating climate-responsive design, material innovation, and adaptability over time. \r\n</p><div><br>\r\n<strong>CAN  BE TAKEN AS A PART FOR THE SC MINOR</strong></div>\r\n<br>\r\nOrganized by the ENAC EPF Lausanne in collaboration with LMC EPFL lab and Kenyatta University, Nairobi, Kenia.<br>\r\n<br>\r\n<em>Teaching team:</em><br>\r\nPatricia Guaita, architect and lecturer, ENAC-IA-ALICE<br>\r\nRaffael Baur, architect, External expert ENAC EPFL<br>\r\nDavid Fernandez Ordonez, Lecturer, ENAC SGC<br>\r\nEnrique Corres, Construction Assistant, ENAC SGC<br>\r\n<br>\r\n<em>Invited experts:</em><br>\r\nDr. Beatrice Malchiodi, Post Doc, LMC EPFL<br>\r\nJaime Velasco, Architect, architect and Lecturer in Department of Architecture &amp; Interior Design Kenyatta University Campus, Nairobi<br>\r\n<br>\r\n <br>\r\n<strong>EPFL Fribourg: 24 August - 04 Sept  2026</strong><br>\r\n <br>\r\n<strong>If you would like to register now, please send an email to </strong><strong><a href=\"mailto:[email protected]\">[email protected]</a></strong><br>\r\n<br>\r\n<img alt=\"\" height=\"868\" src=\"//memento.epfl.ch/public/upload/fckeditorimage/7a/dc/2b0d232e.jpg\" width=\"600\">",
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            "id": 70819,
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            "image_description": "",
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            "id": 71760,
            "title": "Chromatin condensates through a computational microscope",
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            "start_date": "2026-05-28",
            "end_date": "2026-05-28",
            "start_time": "11:00:00",
            "end_time": "11:45:00",
            "description": "<p>The ELISIR program recruits exceptional young talents directly after their Ph.D. to run a small team of scientists pursuing innovative independent research in the Life Sciences.<br>\r\nFeel free to attend this presentation (in SV 1717 or virtually via the zoom link) !<br>\r\n </p>",
            "image_description": "",
            "creation_date": "2026-04-29T17:07:04",
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            "link_label": "",
            "link_url": "",
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            "place_and_room": "SV 1717",
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            "speaker": "<strong>Julia Maristany, University of Cambridge</strong>",
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            "id": 71764,
            "title": "Modeling tumor mutation trees for evolution-guided precision oncology",
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