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DTSTART;TZID=America/Chicago:20260914T120000
DTEND;TZID=America/Chicago:20260914T130000
DTSTAMP:20260903T133514Z
CREATED:20260826T194214Z
LAST-MODIFIED:20260903T133514Z
UID:10001588-1789387200-1789390800@live-uw-engineering.pantheonsite.io
SUMMARY:ECE Research Seminar Series: Dr. Qing Gu\, Associate Professor of ECE and Physics - North Carolina State University
DESCRIPTION:Nanophotonic Devices and Circuits for Quantum and Information Photonics\n\n\n\n\n\n\n\nAbstract:Nanophotonic structures provide powerful means to control the generation\, propagation\, and processing of light\, enabling new opportunities in integrated photonics\, quantum information science\, and optical computing. In this talk\, I will discuss our recent efforts that exploit engineered light-matter interactions and photonic integration to achieve new functionalities. I will highlight three examples: metasurface and photonic-crystal lasers with engineered emission properties\, photonic integrated circuits for quantum signal processing\, and neuromorphic photonic computing. I will also briefly discuss broader opportunities for nanophotonics in quantum science and integrated photonic systems.  \n\n\n\nQing Gu\n\n\n\nBio:Qing Gu is an Associate Professor at North Carolina State University\, jointly appointed in the Departments of Electrical and Computer Engineering and Physics. She received her B.S. degree in Electrical Engineering from the University of British Columbia in 2008 and her Ph.D. degree from the University of California\, San Diego in 2014. Her research focuses on nanophotonic semiconductor light sources\, active and topological hyperbolic metamaterials\, miniature magneto-optical traps for atom cooling and trapping\, quantum signal process on photonic chips\, and photonic neuromorphic computing. She is the author of the book Semiconductor Nanolasers (Cambridge University Press) and a recipient of the ARO Young Investigator Award\, NSF CAREER Award\, and DARPA MTO Pitch Day Award. \n\n\n\nThis event is hosted by ECE Associate Professor Jennifer Choy.
URL:https://live-uw-engineering.pantheonsite.io/event/ece-research-seminar-series-dr-qing-gu-associate-professor-of-ece-and-physics-north-carolina-state-university/
LOCATION:2349 Engineering Hall\, 1415 Engineering Dr\, Madison\, WI\, 53706\, United States
CATEGORIES:Electrical & Computer Engineering,Seminar
ATTACH;FMTTYPE=image/jpeg:https://live-uw-engineering.pantheonsite.io/wp-content/uploads/2025/02/ECE-Research-Seminar-Series.avif
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BEGIN:VEVENT
DTSTART;TZID=America/Chicago:20260914T140000
DTEND;TZID=America/Chicago:20260914T150000
DTSTAMP:20260828T191838Z
CREATED:20260730T151549Z
LAST-MODIFIED:20260828T191838Z
UID:10001533-1789394400-1789398000@live-uw-engineering.pantheonsite.io
SUMMARY:ECE Research Seminar Series: Dr. Max R. Lien\, Northrop Grumman
DESCRIPTION:Radiative Thermal Control of Spacecraft using Thermochromic Infrared Materials\n\n\n\n\n\n\n\nAbstract:  Thermochromic infrared surfaces have temperature-dependent emissivity spectra that enable radiators to respond to changes in the thermal environment. Spacecraft can leverage this unique behavior for autoregulating thermal control\, where thermochromic surfaces are designed to passively transition between a high thermal emissivity (to radiate heat when hot) and a low thermal emissivity (to retain heat when cold). In this talk\, we introduce the materials\, methods\, and analyses of Variable Emissivity Materials (VEMs) using thermal objectives\, where spectral infrared engineering is used to achieve passive control over temperature and heat flux. We show how the models and materials are validated calorimetrically and describe a novel set of thermo-optic characteristics used in both the design and system modeling of VEMs. Finally\, we present an optimization perspective for further development of VEMs for thermal control. \n\n\n\n\n\n\n\nBio: Dr. Max R. Lien is a research scientist focused on developing optical materials and photonics for national security applications. He earned a Bachelor of Science from the University of Wisconsin–Madison in 2019\, followed by a Master of Science in 2021 and a Doctor of Philosophy in 2023 from the University of Southern California\, all in electrical engineering. Currently\, Dr. Lien is a Principal Research Scientist in the basic research laboratories at Northrop Grumman in Redondo Beach\, California\, where he oversees a portfolio of advanced material development and leads research collaborations with academic partners. Previously\, he was a Visiting Technologist at the NASA Jet Propulsion Laboratory working on mid-infrared optics for compact hyperspectral imagers. \n\n\n\nThis event is hosted by ECE/ME Professor Joseph Andrews.
URL:https://live-uw-engineering.pantheonsite.io/event/ece-research-seminar-series-dr-max-r-lien-northrop-grumman/
LOCATION:2349 Engineering Hall\, 1415 Engineering Dr\, Madison\, WI\, 53706\, United States
CATEGORIES:Electrical & Computer Engineering,Seminar
ATTACH;FMTTYPE=image/jpeg:https://live-uw-engineering.pantheonsite.io/wp-content/uploads/2025/02/ECE-Research-Seminar-Series.avif
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Chicago:20260915T122000
DTEND;TZID=America/Chicago:20260915T125000
DTSTAMP:20260603T151137Z
CREATED:20260603T150005Z
LAST-MODIFIED:20260603T151137Z
UID:10001526-1789474800-1789476600@live-uw-engineering.pantheonsite.io
SUMMARY:ECE Discovery Panel: Applied Electromagnetics & Acoustics
DESCRIPTION:Engineering undergraduates—any major or undecided! Join us in 2317 Engineering Hall as faculty members explore the technical area of Applied Electromagnetics & Acoustics. \n\n\n\nAll undergraduate students are welcome as Assistant Professor Chu Ma\, Assistant Teaching Professor Nathan Strachen\, and Assistant Professor Haihan Sun discuss real-world applications\, where engineers are making an impact\, and possible career paths. \n\n\n\nThis session is a great opportunity to learn about courses in this area and where this knowledge can take you. \n\n\n\nCome for the insights\, bring your questions\, and stay for the sandwiches! \n\n\n\n\n\nChu Ma\n\n\n\n\n\nNathan Strachen\n\n\n\n\n\nHaihan Sun
URL:https://live-uw-engineering.pantheonsite.io/event/ece-discovery-panel-applied-electromagnetics-acoustics/
LOCATION:2317 Engineering Hall\, 1415 Engineering Drive\, Madison\, 53711
CATEGORIES:Electrical & Computer Engineering,Information Session
ATTACH;FMTTYPE=image/jpeg:https://live-uw-engineering.pantheonsite.io/wp-content/uploads/2026/06/ECE-Discovery-Panel-Series-Applied-Electromagnetics-Acoustics.avif
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Chicago:20260915T160000
DTEND;TZID=America/Chicago:20260915T170000
DTSTAMP:20260908T192840Z
CREATED:20260908T190628Z
LAST-MODIFIED:20260908T192840Z
UID:10001596-1789488000-1789491600@live-uw-engineering.pantheonsite.io
SUMMARY:CBE Seminar Series: J. Will Medlin
DESCRIPTION:J. Will MedlinProfessorDepartment of Chemical and Biological EngineeringUniversity of Colorado – Boulder \n\n\n\nNear-surface Environment Control for Selective Catalysis\n\n\n\n\n\n\n\nIdentifying catalyst materials that are active and selective for specific reactions is important not only for making improvements to existing chemical processes\, but also for designing new routes to a sustainable energy economy. For example\, improved materials are needed for carbon-carbon coupling reactions that can yield aviation fuel components from biomass or CO2-derived feedstocks. Solid catalysts used in these applications are commonly designed as composite inorganic materials where\, for example\, active metal nanoparticles are dispersed on a metal oxide support. Much research effort has gone into optimizing these inorganic components for various applications. Under reaction conditions\, however\, catalytically active surfaces often are heavily covered by “spectator” species. It was often assumed that these species did not participate directly in the reaction\, but recent studies have indicated that such spectators can play a major role in enhancing catalytic selectivity and rates. This suggests the possibility that surface organic species can themselves be tuned as key components of a catalyst\, opening up a new avenue for catalyst design. In fact\, organic ligands are widely employed as surfactants in the synthesis of metal nanoparticles. Numerous studies have shown that leaving these ligands in place can have beneficial effects for catalyst performance\, especially related to controlling selectivity toward desired products.  \n\n\n\nThus\, one approach toward controlling selectivity in catalysis is to systematically design these encapsulating ligands to impart improved activity\, selectivity\, and stability in reactions such as CO2 hydrogenation\, C-C coupling\, and the hydrodeoxygenation of biomass-derived oxygenates. This presentation will describe design of different components of the organic ligands—the “head” group that covalently attaches to the support versus the “tail” organic function—to control selectivity in reactions at surfaces. Use of organic promoters for metal catalysts\, metal oxides\, and interfacial structures including highly dispersed\, “single atom” catalysts will be described. Finally\, the presentation will explain advantages and limitations for use of organic modifiers in heterogeneous catalysis.
URL:https://live-uw-engineering.pantheonsite.io/event/cbe-seminar-series-j-will-medlin/
LOCATION:1610 Engineering Hall\, 1415 Engineering Drive\, Madison\, 53706
CATEGORIES:Chemical & Biological Engineering,Seminar
ATTACH;FMTTYPE=image/jpeg:https://live-uw-engineering.pantheonsite.io/wp-content/uploads/2023/02/2023_CBE-sem-series-web-header-scaled.webp
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Chicago:20260915T160000
DTEND;TZID=America/Chicago:20260915T180000
DTSTAMP:20260807T170719Z
CREATED:20260807T170716Z
LAST-MODIFIED:20260807T170719Z
UID:10001547-1789488000-1789495200@live-uw-engineering.pantheonsite.io
SUMMARY:UW-ISyE Welcome Back Picnic
DESCRIPTION:All ISyE students are invited to stop by the Vilas Park to meet the faculty\, staff and fellow students of the UW-ISyE Dept. Burgers\, Chicken\, and vegan options will be available and games will be provided. Free department swag for all attendees!
URL:https://live-uw-engineering.pantheonsite.io/event/uw-isye-welcome-back-picnic/
LOCATION:1602 Vilas Park Dr.\, 1602 Vilas Park Dr.\, Madison\, 53715
CATEGORIES:Industrial & Systems Engineering,Social Event
ATTACH;FMTTYPE=image/jpeg:https://live-uw-engineering.pantheonsite.io/wp-content/uploads/2023/07/WelcomeBackPicnic-1024x576-1-jpeg-webp.webp
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Chicago:20260916T173000
DTEND;TZID=America/Chicago:20260916T190000
DTSTAMP:20260911T154725Z
CREATED:20260910T203440Z
LAST-MODIFIED:20260911T154725Z
UID:10001599-1789579800-1789585200@live-uw-engineering.pantheonsite.io
SUMMARY:ANS Evening with Nuclear Industry
DESCRIPTION:The UW–Madison chapter of the American Nuclear Society (ANS) and the Department of Nuclear Engineering & Engineering Physics invites all engineering students to attend this Evening with Nuclear Industry networking event. \n\n\n\nThe nuclear industry has benefitted from renewed investment and bipartisan support in recent years\, and with that momentum there is a growing need to develop the nuclear workforce. Come learn about some of the wide-ranging career opportunities for all engineering students during this informal networking hour with top employers in the nuclear field. Refreshments will be served. \n\n\n\nEvent DetailsWednesday\, September 16 at 5:30pmTong Auditorium (Engineering Centers Building)No RSVP required
URL:https://live-uw-engineering.pantheonsite.io/event/ans-evening-with-nuclear-industry/
LOCATION:1003 (Tong Auditorium) Engineering Centers Building\, 1550 Engineering Drive\, Madison\, WI\, 53706\, United States
CATEGORIES:Nuclear Engineering & Engineering Physics
ATTACH;FMTTYPE=image/png:https://live-uw-engineering.pantheonsite.io/wp-content/uploads/2026/09/ANS-Evening-with-Nuclear-Industry.avif
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Chicago:20260917T120000
DTEND;TZID=America/Chicago:20260917T130000
DTSTAMP:20260914T165659Z
CREATED:20260914T165412Z
LAST-MODIFIED:20260914T165659Z
UID:10001600-1789646400-1789650000@live-uw-engineering.pantheonsite.io
SUMMARY:NEEP Seminar Series: Braden Goddard\, University of Missouri
DESCRIPTION:NEEP Seminar SeriesThursdays12:00 – 1:00 PM106 Engineering Research BuildingPlease contact office@neep.wisc.edu for assistance with remote participation.The Strategic Revival of Nuclear Engineering at the University of MissouriThe national landscape of nuclear engineering education and research is undergoing a profound transformation driven by surging demands for clean energy and a secure domestic supply of critical medical isotopes. Amid this resurgence\, the University of Missouri (MU) has embarked on a strategic revival and expansion of its nuclear engineering infrastructure and academic curriculum. This presentation outlines the vision\, existing capabilities\, and ambitious future roadmap guiding MU’s nuclear engineering ecosystem. At the foundation of this revival is MU’s current competitive advantage: the University of Missouri Research Reactor (MURR). Operating continuously at 10 megawatts\, MURR stands as the highest-power university research reactor in the United States and serves as a vital national anchor for the production of lifesaving cancer theranostics and radiopharmaceuticals. Building upon this decades-long expertise in radiation sciences and isotope production\, MU’s vision bridges the gap between foundational nuclear science and next-generation reactor technology. Looking forward\, MU is translating this momentum into massive infrastructure expansions. Central to these future plans is the NextGen MURR initiative\, a project to construct a new\, state-of-the-art 20-megawatt research reactor designed to expand advanced materials testing\, secure the domestic radioisotope supply chain\, and serve as a premiere workforce development platform. Complementing this is the newly broken ground on the Radioisotope Science Center in May 2026 and the Engineering Innovation Center in September 2026. By integrating these world-class facilities with an energized academic curriculum\, the University of Missouri aims to cultivate the highly skilled nuclear workforce required to propel the next generation of fission technology\, medicine\, and the nuclear fuel cycle. \n\n\n\n\n\n\n\nBraden Goddard is an associate professor and the director of the Nuclear Engineering Program in the John J. Boswell Department of Mechanical and Aerospace Engineering at the University of Missouri. In his current position he teaches undergraduate and graduate courses on multiple topics in mechanical and nuclear engineering and performs applied research. He is also responsible for overseeing all nuclear engineering programmatic activities. The primary focus of his research is on radiation measurements\, nuclear nonproliferation and isotope production. This effort has resulted in teaching and co-teaching 18 different courses and supervising 112 researchers (high school students though visiting faculty)\, funded by 19 external grants totaling $5.2M to just Goddard’s research group. Prior to joining the University of Missouri\, Goddard worked at domestic and international industries\, national laboratories and academia. These locations include TXU Energy where he updated the fidelity of the pressurized water reactor plant simulator; the University of Tokyo where he performed experiments with two phase fluid flow; Oak Ridge National Laboratory and Los Alamos National Laboratory\, where he developed new methodologies for quantifying actinide compositions for international safeguards applications; the Nevada National Security Site\, where he served as an emergency responder developing radiation detection and identification techniques and deploying to national events to survey for radioactive materials; Khalifa University\, where he trained the next generation of Emirati nuclear engineers and set up and managed multiple radiation measurement-based laboratories; Abu Dhabi Customs\, where he served as an emergency reachback scientist\, adjudicating radiation alarms created when shipping cargo entered the country through Khalifa Port; and Virginia Commonwealth University\, where he established a world-renowned research group focused on radiation measurements\, simulations and nonproliferation\, controlling 5 different laboratories that spanned 3\,250 sq. ft. of laboratory space with an annual research expenditure of $1.3M.He received his BS MS and PhD in Nuclear Engineering from Texas A&M University. He is a senior member of the Institute of Nuclear Materials Management (INMM)\, founding faculty advisor for the INMM-VCU student chapter\, INMM deputy chair for the materials control and accountability division and associate editor for the Journal of Nuclear Materials Management. He is also a World Institute for Nuclear Security (WINS) Certified Nuclear Security Professional (CNSP) and served as a mentor for the 2022 World Nuclear University Summer Institute. His research has been published and presented in over 200 international journals and conference papers.
URL:https://live-uw-engineering.pantheonsite.io/event/neep-seminar-series-braden-goddard-university-of-missouri/
LOCATION:Wisconsin
CATEGORIES:Nuclear Engineering & Engineering Physics
ATTACH;FMTTYPE=image/png:https://live-uw-engineering.pantheonsite.io/wp-content/uploads/2026/09/NEEP-Seminar-Event-Feature-Image.avif
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Chicago:20260917T160000
DTEND;TZID=America/Chicago:20260917T170000
DTSTAMP:20260914T135753Z
CREATED:20260805T182953Z
LAST-MODIFIED:20260914T135753Z
UID:10001536-1789660800-1789664400@live-uw-engineering.pantheonsite.io
SUMMARY:ME 903 Graduate Seminar: Laura Grossenbacher
DESCRIPTION:The ME 903: Graduate Student Lecture Series features campus and visiting speakers who present on a variety of research topics in the field of mechanical engineering. Dr. Laura Grossenbacher is the Director of the Program for Engineering Communication and Applied Ethics and the Director of Undergraduate Program Review.  \n\n\n\nPresentation Title: Navigating Ethical Challenges in Mechanical Engineering Research and Industry Contexts: Strategies for Ethical Leadership – and Followership \n\n\n\nAbstract: This workshop will provide a brief background on engineering ethics challenges and the behavioral science that suggests we must think both with and beyond a Code of Ethics to deal with the moral ambiguities that can emerge in complex workplace contexts\, including in university research labs and large engineering organizations. We will explore questions that engineering leaders should ask themselves – but also some “followership” strategies for those engineers who are not yet leaders. My hope is to engage the ME 903 students in discussion of a couple of unique cases to practice voicing\, listening\, and productively responding to the values of their peers. \n\n\n\nBio: Laura Grossenbacher is Director of Undergraduate Program Review and Director of the Technical Communication Program in the College of Engineering at the University of Wisconsin-Madison. She holds a Ph.D. from the University of Texas at Austin and has been teaching courses in engineering communication and ethics for over twenty-five years to both undergraduates and graduate students in the UW Madison College of Engineering. Since year 2012 she has been developing ethics cases for use with a variety of different Professional Engineering groups\, including engineers working for the Wisconsin Department of Transportation\, the Wisconsin Department of Natural Resources\, American Transmission Company\, Madison Gas and Electric\, WE Energies\, Realtime Utility\, the Milwaukee Metropolitan Sewerage District\, and the American Water Resources Administration; she has also held ethics workshops for the Wisconsin Structural Engineering Code Refresher Annual Conference\, the Wisconsin Concrete Pavement Association\, the Wisconsin Society for Landscape Architects\, and the American Society for Heating\, Refrigerating and Air Conditioning Engineers. \n\n\n\nHer ethics workshops are designed to engage engineers and other professionals in discussing and applying codes of ethics\, moral theory\, and behavioral science to practical cases.She is a member of the Association for Practical and Professional Ethics (APPE)\, and a current co-chair\, with Rider Foley\, of the Online Ethics Center Community of Practice in Teaching Engineering Ethics. Her most recent conference workshops have been for the annual ABET Symposium and at the American Society for Engineering Education on using applied ethics cases to interrogate challenges with power and inclusivity.
URL:https://live-uw-engineering.pantheonsite.io/event/me-903-graduate-seminar-laura-grossenbacher-2/
LOCATION:3M Auditorium\, rm 1106 Mechanical Engineering Building\, 1513 University Ave\, Madison\, 53711
CATEGORIES:Mechanical Engineering,Seminar
ATTACH;FMTTYPE=image/jpeg:https://live-uw-engineering.pantheonsite.io/wp-content/uploads/2024/08/Event-Graphics-for-Calendar-12-jpg.avif
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Chicago:20260918T120000
DTEND;TZID=America/Chicago:20260918T130000
DTSTAMP:20260914T135821Z
CREATED:20260820T172040Z
LAST-MODIFIED:20260914T135821Z
UID:10001565-1789732800-1789736400@live-uw-engineering.pantheonsite.io
SUMMARY:Mechanics Seminar: Professor Guruswami Ravichandran
DESCRIPTION:The Mechanics Seminar Series is a weekly seminar given by campus and visiting speakers on topics across the spectrum of mechanics research (solids\, fluids\, and dynamics). Professor Guruswami Ravichandran is a professor at Caltech. \n\n\n\nPresentation Title: Shock Induced Deformation and Failure during Pore Collapse in PMM \n\n\n\nAbstract: Porosity is prevalent in engineering materials and strongly influences their response to dynamic loading. Under shock compression\, localized deformation near pores can govern failure in lattice structures\, additively manufactured components\, and energetic materials\, yet the underlying mesoscopic mechanisms remain poorly understood. An internal digital image correlation (DIC) technique is developed for transparent materials\, enabling in situ\, high-speed\, full-field measurements of displacement and strain at strain rates of 10³ – 10⁶ s⁻¹. Using specimens with embedded internal speckle patterns\, the technique is applied to investigate shock-induced pore collapse in PMMA at impact stresses up to 1 GPa. For single spherical pores\, measurements reveal intense strain localization surrounding the collapsing cavity. As shock stress increases\, the response transitions from classical strain concentration to adiabatic shear band formation and ultimately dynamic shear fracture. Explicit finite element simulations incorporating thermo-viscoplastic constitutive behavior identify thermal softening-induced instability as the governing mechanism. Experiments on pore pairs show that pore interactions alter strain localization\, modify failure thresholds\, and influence crack propagation through baroclinic effects and shear-wave interactions. These results provide new insights into shock-driven shear localization and failure in porous materials. \n\n\n\nBio: Guruswami (Ravi) Ravichandran is the John E. Goode\, Jr.\, Professor of Aerospace and Mechanical Engineering at the California Institute of Technology. He received his Ph.D. in Engineering (Solid Mechanics and Structures) from Brown University. He is a member of the National Academy of Engineering and Academia Europaea\, and a Fellow of ASME\, SEM\, and AAM. He was named Chevalier de l’Ordre des Palmes Académiques by the Republic of France. His honors include the ASME Timoshenko Medal\, SES Eringen Medal\, and SEM Murray Lecture Award. His research interests are in mechanics of materials\, including dynamic behavior\, wave propagation\, composites\, multifunctional materials\, micro/nano-mechanics\, cell mechanics\, and experimental methods.
URL:https://live-uw-engineering.pantheonsite.io/event/mechanics-seminar-professor-guruswami-ravichandran/
LOCATION:1610 Engineering Hall\, 1415 Engineering Drive\, Madison\, 53706
CATEGORIES:Mechanical Engineering,Seminar
ATTACH;FMTTYPE=image/jpeg:https://live-uw-engineering.pantheonsite.io/wp-content/uploads/2024/08/Event-Graphics-for-Calendar-11-jpg.avif
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Chicago:20260918T130000
DTEND;TZID=America/Chicago:20260918T140000
DTSTAMP:20260908T165444Z
CREATED:20260908T165443Z
LAST-MODIFIED:20260908T165444Z
UID:10001594-1789736400-1789740000@live-uw-engineering.pantheonsite.io
SUMMARY:INFORMS Kick-off Meeting
DESCRIPTION:Please join UW-Madison’s INFORMS student chapter for their fall kick-off meeting. \n\n\n\nINFORMS is the largest professional association for the decision and data sciences. Come learn what INFORMS is all about\, meet fellow students\, and hear about upcoming events and opportunities. Pizza will be provided for lunch- all are welcome!
URL:https://live-uw-engineering.pantheonsite.io/event/informs-kick-off-meeting/
LOCATION:1270 Mechanical Engineering\, 1513 University Ave\, Madison\, 53706
CATEGORIES:Industrial & Systems Engineering,Student Org Event
ATTACH;FMTTYPE=image/jpeg:https://live-uw-engineering.pantheonsite.io/wp-content/uploads/2024/09/Student-Org-EVent-scaled.avif
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=America/Chicago:20260918T190000
DTEND;TZID=America/Chicago:20260918T210000
DTSTAMP:20260910T163452Z
CREATED:20260910T162949Z
LAST-MODIFIED:20260910T163452Z
UID:10001598-1789758000-1789765200@live-uw-engineering.pantheonsite.io
SUMMARY:ISyE - IISE - Bonfire & Smores Night
DESCRIPTION:Join the IISE student organization for this social networking event at Dejope Fire Pit outside Four Lakes Market for a fun night and some smores. Bring friends\, especially if they are considering Industrial Engineering!
URL:https://live-uw-engineering.pantheonsite.io/event/isye-iise-bonfire-smores-night/
LOCATION:Dejope Fire Pit\, 640 Elm Dr\, Madison\, Wisconsin\, 53706
CATEGORIES:Industrial & Systems Engineering,Social Event,Student Org Event
ATTACH;FMTTYPE=image/jpeg:https://live-uw-engineering.pantheonsite.io/wp-content/uploads/2025/09/Bonfire.avif
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