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        "time_start":"14:00:00",
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        "event_title":"Info Session | Early Career Opportunities at Sherwin-Williams",
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        "combined_title":"Info Session | Early Career Opportunities at Sherwin-Williams",
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        "event_type":"Careers \/ Jobs",
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        "description":"Looking to kickstart your career?\u00a0At Sherwin-Williams, you will find a variety of positions with opportunities for upward mobility, including internships and full-time roles. Whether you\u2019re looking for roles in Sales\/Management, STEM, R&amp;D, (andmuch more!), Sherwin-Williams has the right program to jump start your career.Join the S-W Talent Acquisition team on February 12th to learn about:\nPart-Time, Internship, and Full-Time Roles\nPerks &amp; Benefits\nEmployee Programs\n\u00a0Student joining instructions:\u00a0To join a Handshake video as a student, login to your Handshake account, navigate to the event page or your RSVPed events list, and click the \"Join Event\" button which will appear in blue\u00a05 minutes prior to the event start time.\u00a0\u00a0We can\u2019t wait to speak with you soon!",
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        "event_title":"Rackham Consultation Services: Virtual Office Hours",
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        "combined_title":"Rackham Consultation Services: Virtual Office Hours",
        "event_subtitle":"",
        "event_type":"Livestream \/ Virtual",
        "event_type_id":"24",
        "description":"If you have a quick question or have a time sensitive matter, attend the\u00a0Rackham Consultation Services\u00a0open office hours weekly on Monday and Wednesday from 2:00 to 3:00 p.m. via Zoom. In the interest of providing students as much privacy as possible, you may spend a brief time in a waiting room if the resolution officer is engaged with another student. They will be with you as quickly as possible.\nJoin Zoom Meeting\nhttps:\/\/umich.zoom.us\/j\/99196090990\nMeeting ID: 991 9609 0990\nOne tap mobile\n+13092053325,,99196090990# US\n+13126266799,,99196090990# US (Chicago)\n\u2014\nDial by your location\n\n+1 309 205 3325 US\n+1 312 626 6799 US (Chicago)\n+1 646 876 9923 US (New York)\n+1 646 931 3860 US\n+1 301 715 8592 US (Washington DC)\n+1 305 224 1968 US\n+1 386 347 5053 US\n+1 507 473 4847 US\n+1 564 217 2000 US\n+1 669 444 9171 US\n+1 669 900 6833 US (San Jose)\n+1 689 278 1000 US\n+1 719 359 4580 US\n+1 253 205 0468 US\n+1 253 215 8782 US (Tacoma)\n+1 346 248 7799 US (Houston)\n+1 360 209 5623 US\n+1 647 558 0588 Canada\n+1 778 907 2071 Canada\n+1 780 666 0144 Canada\n+1 204 272 7920 Canada\n+1 438 809 7799 Canada\n+1 587 328 1099 Canada\n+1 647 374 4685 Canada\n\nMeeting ID: 991 9609 0990\nFind your local number:\u00a0https:\/\/umich.zoom.us\/u\/aUy8Alk2\n\u2014\nJoin by SIP\n\n99196090990@zoomcrc.com\n\nWe want to ensure full and equitable participation in our events. If an accommodation would promote your full participation in this event, please follow the registration link to indicate your accommodation requirements. Please let us know as soon as possible in order to have adequate time, preferably one week, to arrange for your requested accommodations or an effective alternative.",
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        "datetime_modified":"20250210T001121",
        "datetime_start":"20250212T143000",
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        "time_start":"14:30:00",
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        "time_zone":"America\/Detroit",
        "event_title":"Learning Seminar in Algebraic Combinatorics: Corresponding simplicial generators to nested matroid quotients",
        "occurrence_title":"",
        "combined_title":"Learning Seminar in Algebraic Combinatorics: Corresponding simplicial generators to nested matroid quotients: Calvin Yost-Wolff",
        "event_subtitle":"Calvin Yost-Wolff",
        "event_type":"Workshop \/ Seminar",
        "event_type_id":"21",
        "description":"Last week David taught us a new set of generators of the Chow ring of a matroid called the simplicial generators. In the special case when our matroid is the uniform matroid of rank and dimension n, the Chow ring agrees with the Chow ring of the permutahedron, a particularly nice toric variety. I will show that in this case, the simplicial generators correspond to nested quotients of matroids on n elements. The tool I will introduce relating the two are Minkowski weights, which give an alternate description of the Chow rings of toric varieties. Either at the end of my talk or in our talk week, we will use this relationship to analyze the kernel of the surjection from the Chow ring of the permutahedron \\Sigma_n to the Chow ring of a matroid with ground set [n], leading to a proof of Poincare duality.",
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        "datetime_modified":"20250227T123150",
        "datetime_start":"20250212T150000",
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        "event_title":"ASM Tech Talk: Exploring Hardware Engineering Careers in Semiconductors",
        "occurrence_title":"",
        "combined_title":"ASM Tech Talk: Exploring Hardware Engineering Careers in Semiconductors",
        "event_subtitle":"",
        "event_type":"Careers \/ Jobs",
        "event_type_id":"2",
        "description":"Do you want to shape the future of semiconductor technology? ASM is hosting a virtual Tech talk to explore exciting career opportunities for Hardware engineering students in the world of Semiconductor technology.Why ASM?\n\nInnovation Leader: Work with world-class teams behind 2,900+patents and groundbreaking developments in ALD and epitaxy semiconductor deposition technologies that power tomorrow's devices\n\nGlobal Collaboration: Join a diverse team of 4,500+ professionals from 70+ nationalities, collaborating across 16 locations worldwide\n\nMeaningful Impact: Develop technologies that improve millions of lives through AI, electric vehicles, medical devices, and green energy solutions\n\nSustainability Pioneer: Be part of the semiconductor industry's first company with approved Net Zero targets, driving environmental innovation\n\nGrowth &amp; Development: Access dedicated leadership programs andinternational opportunities while working alongside industry experts\nWhat to Expect:\n\nInnovation Stories: Hear directly from our R&amp;D team about pushing the limits of physics and developing next-generation semiconductor technologies\n\nCareer Pathways: Discover how you can grow at ASM.\n\nReal Impact: Learn how our technologies enable critical advances in computing, healthcare, and sustainable solutions\nWho We're Looking For:Students pursuing degrees in:\nMechanical Engineering\nElectrical Engineering\nSystems Engineering\nRobotics\nRelated technical fields\n\nApply Now: Join a company that's been ahead of what's next since 1968. Register for our virtual session to learn how you can start your career at ASM and help create the technologies that will shape tomorrow.Be part of what's next. Register today.",
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        "datetime_modified":"20250203T073329",
        "datetime_start":"20250212T150000",
        "datetime_end":"20250212T160000",
        "has_end_time":1,
        "date_start":"2025-02-12",
        "date_end":"2025-02-12",
        "time_start":"15:00:00",
        "time_end":"16:00:00",
        "time_zone":"America\/Detroit",
        "event_title":"Department Colloquium | Non-Reciprocal Phase Transitions",
        "occurrence_title":"",
        "combined_title":"Department Colloquium | Non-Reciprocal Phase Transitions: Peter Littlewood (University of Chicago)",
        "event_subtitle":"Peter Littlewood (University of Chicago)",
        "event_type":"Workshop \/ Seminar",
        "event_type_id":"21",
        "description":"Spontaneous synchronization is at the core of many natural phenomena. Your heartbeat is maintained because cells contract in a synchronous wave; some bird species synchronize their motion into flocks; quantum synchronization is responsible for laser action and superconductivity. \r\n\r\nThe transition to synchrony, or between states of different patterns of synchrony, is a dynamical phase transition that has much in common with conventional phase transitions of state \u2013 for example solid to liquid, or magnetism \u2013 but the striking feature of driven dynamical systems is that the components are \u201cactive\u201d. Consequently quantum systems with dissipation and decay are described by non-Hermitian Hamiltonians, and active matter can abandon Newton\u2019s third law and have non-reciprocal interactions. This substantially changes the character of many-degree-of-freedom dynamical phase transitions between steady states and the critical phenomena in their vicinity, since the critical point is an \u201cexceptional point\u201d where eigenvalues become degenerate and eigenvectors coalesce.\r\n\r\nWe will illustrate this in several different systems \u2013 a Bose-Einstein condensate of polaritons, models of multicomponent active matter such as flocks of birds, generalized Kuramoto models, and others. We argue that there is a systematic theory and generalized phase diagram, and corresponding universality behaviors determined by the  symmetry of the models. \r\n\r\n[1] Fruchart et al., Nature 592, 363-369 (2021)\r\n[2] Hanai et al. Phys.Rev.Lett 122, 185301 (2019)\r\n[3] R Hanai, PB Littlewood Physical Review Research 2 (3), 033018 (2020)",
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                "group_name":"Department Colloquia",
                "group_id":"3804",
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        "datetime_modified":"20250227T123158",
        "datetime_start":"20250212T150000",
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        "time_start":"15:00:00",
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        "time_zone":"America\/Detroit",
        "event_title":"International Students Career Series: How to Navigate Small Talk",
        "occurrence_title":"",
        "combined_title":"International Students Career Series: How to Navigate Small Talk",
        "event_subtitle":"",
        "event_type":"Careers \/ Jobs",
        "event_type_id":"2",
        "description":"In the United States, many people participate in what is called \"small talk\", where you make conversation with strangers or acquaintances about non-controversial topics, such as the weather, sports, or popular television shows. \u201cSmall talk\u201d is one of the ways in American culture to chat about harmless topics in order to establish a connection and start to build a friendship. For example, while waiting for an interview, in line at a M-Den, or in an elevator on campus, don\u2019t be startled if a stranger says something to you like, \u201cDid you watch the FootballGame last night? What a game!\u201d They might also make a joke about the long line you\u2019re both in, or comment on the current situation. If you areinterested in learning more about \"small talk\", now it\u2019s your chance to sign up for this workshop on how to navigate small talk as an international student. In this workshop, we will educate you on what is small talk and you will also have the chance to practice small talk with Peers!",
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