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    {
        "datetime_modified":"20240407T105849",
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        "datetime_end":"20240411T163000",
        "has_end_time":1,
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        "date_end":"2024-04-11",
        "time_start":"15:30:00",
        "time_end":"16:30:00",
        "time_zone":"America\/Detroit",
        "event_title":"Biomedical Engineering Seminar Series",
        "occurrence_title":"",
        "combined_title":"Biomedical Engineering Seminar Series: Engineering Smart Nanotechnologies for Immuno-Oncology, with John T. Wilson, Ph.D.",
        "event_subtitle":"Engineering Smart Nanotechnologies for Immuno-Oncology, with John T. Wilson, Ph.D.",
        "event_type":"Workshop \/ Seminar",
        "event_type_id":"21",
        "description":"Abstract:\r\nCancer immunotherapy is revolutionizing the treatment of an ever-expanding diversity of cancer types, yielding impressive complete and durable responses in a subset of patients. However, most patients do not respond to currently approved immune checkpoint inhibitors. Our group is working to solve this emergent grand challenge in immuno-oncology through the development of molecularly engineered technologies that increase immune recognition of tumors. This talk will focus on our recent work in the design of therapeutics and drug carrier technologies for activation of antitumor innate immunity and how we are leveraging these materials to increase tumor immunogenicity and responses to immunotherapy.\r\n\r\nBio:\r\nJohn T. Wilson is an Associate Professor of Chemical & Biomolecular Engineering and Chancellor Faculty Fellow at Vanderbilt University, where he also Co-Leads the Host-Tumor Interactions Program within the Vanderbilt-Ingram Cancer Center. Dr. Wilson graduated from Oregon State University with a B.S. in Bioengineering and received his Ph.D. in Bioengineering from the Georgia Institute of Technology. He was awarded a Cancer Research Institute (CRI) Postdoctoral Fellowship to support his postdoctoral research at the University of Washington. Dr. Wilson started his independent career at Vanderbilt in 2014 and was promoted to Associate Professor with tenure in 2021. His multidisciplinary Immunoengineering Laboratory works at the interface of engineering and immunology to improve human health, bringing together expertise in molecular engineering, nanotechnology, and pharmaceutical science to develop strategies for more precisely modulating immune and inflammatory responses at the tissue, cell, and subcellular level. He has published more than 50 scientific articles, including in high-impact journals such as Nature Nanotechnology and Science Immunology. He is a Fellow of the American Institute for Medical and Biological Engineering (AIMBE) and has received several awards including the NSF CAREER award, Alex\u2019s Lemonade Stand Foundation \u2018A\u2019 Award, Stand Up To Cancer Innovative Research Grant Award, CBME Young Innovator Award, and Vanderbilt Chancellor\u2019s Award for Research.\r\n\r\nZoom:\r\nhttps:\/\/umich.zoom.us\/j\/94801149707",
        "occurrence_notes":"Zoom: https:\/\/umich.zoom.us\/j\/94801149707",
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        "cost":"",
        "tags":["Basic Science","Biointerfaces","Biology","biomedical","biomedical engineering","Bioninterfaces","Biosciences","Biotechnology","bme","engineer","engineering","Michigan Engineering"],
        "website":"",
        "sponsors":[
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                "group_name":"Biomedical Engineering",
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    {
        "datetime_modified":"20240404T162523",
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        "has_end_time":1,
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        "date_end":"2024-04-11",
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        "time_end":"16:20:00",
        "time_zone":"America\/Detroit",
        "event_title":"The Department of Astronomy Distinguished Alumna Colloquium Presents:",
        "occurrence_title":"",
        "combined_title":"The Department of Astronomy Distinguished Alumna Colloquium Presents:: Dr. Vivienne F. Baldassare, William Band Distinguished Assistant Professor, Washington State University",
        "event_subtitle":"Dr. Vivienne F. Baldassare, William Band Distinguished Assistant Professor, Washington State University",
        "event_type":"Lecture \/ Discussion",
        "event_type_id":"13",
        "description":"\"Observational constraints on the population of massive black holes in dwarf galaxies\"\r\n\r\nThe population of massive black holes in dwarf galaxies offers a window into black hole formation in the early universe. The fraction of dwarf galaxies that host a massive black hole -- and the properties of those black holes -- are thought to depend on the mechanism by which they form. However, black holes in dwarf galaxies can be challenging to find. I will describe my research group\u2019s work searching for active massive black holes in dwarf galaxies, particularly using variability and transients. I will also describe our efforts to constrain the overall occupation fraction of black holes in dwarf galaxies.",
        "occurrence_notes":null,
                "guid":"121157-21845904@events.umich.edu",
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        "tags":["astronomy","astrophysics"],
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                "group_id":"1178",
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    {
        "datetime_modified":"20240304T140847",
        "datetime_start":"20240411T160000",
        "datetime_end":"20240411T170000",
        "has_end_time":1,
        "date_start":"2024-04-11",
        "date_end":"2024-04-11",
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        "time_zone":"America\/Detroit",
        "event_title":"Differential Equations Seminar: Hilbert's sixth problem for waves",
        "occurrence_title":"",
        "combined_title":"Differential Equations Seminar: Hilbert's sixth problem for waves: Zaher Hani (Michigan)",
        "event_subtitle":"Zaher Hani (Michigan)",
        "event_type":"Workshop \/ Seminar",
        "event_type_id":"21",
        "description":"Hilbert\u2019s sixth problem asks for a mathematically rigorous justification of the macroscopic laws of statistical physics from the microscopic laws of dynamics. The classical setting of this problem asks for the justification of Boltzmann\u2019s kinetic equation from Newtonian particle dynamics. This justification has been proven for short times, starting with the work of Lanford in 1975, but its long time justification remains one of the biggest open problems in kinetic theory. \r\n\r\nIf classical colliding particles are replaced with interacting waves, one formally obtains what is known as \"wave kinetic theory\u201d, which is sometimes also called \"wave turbulence theory\". This theory of statistical physics for waves has been developed, starting in the late 1920s, for wave systems that arise in various scientific disciplines like many-particle quantum physics, oceanography, climate science, etc. The central mathematical problem there is also the justification of a kinetic equation, known as the wave kinetic equation, starting from the Hamiltonian PDE that governs the corresponding microscopic system. In this talk, we shall describe the state of the art of this problem, leading to a most recent joint work with Yu Deng (USC), in which we give the first instance of a long time justification of a nonlinear (particle or wave) collisional kinetic limit.",
        "occurrence_notes":null,
                "guid":"119643-21843196@events.umich.edu",
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        "campus_maps_id":"53",
        "room":"4088",
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        "tags":["Mathematics"],
        "website":"",
        "sponsors":[
             {
                "group_name":"Differential Equations Seminar - Department of Mathematics",
                "group_id":"4888",
                "website":""                },             {
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                "group_id":"3791",
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        "datetime_modified":"20240206T150759",
        "datetime_start":"20240411T160000",
        "datetime_end":"20240411T190000",
        "has_end_time":1,
        "date_start":"2024-04-11",
        "date_end":"2024-04-11",
        "time_start":"16:00:00",
        "time_end":"19:00:00",
        "time_zone":"America\/Detroit",
        "event_title":"Hydrogen Grand Challenge",
        "occurrence_title":"",
        "combined_title":"Hydrogen Grand Challenge: Final Pitch Competition",
        "event_subtitle":"Final Pitch Competition",
        "event_type":"Presentation",
        "event_type_id":"16",
        "description":"The Hydrogen Grand Challenge is a series of prize competitions organized by MI Hydrogen and sponsored by H2Power. The inaugural competition, Michigan Hydrogen Horizon, challenges University of Michigan students to craft a business case for the Michigan-centric, regional deployment of hydrogen. This competition encourages students to explore and showcase the value of clean hydrogen in specific sectors and technology applications.\r\n\r\nHydrogen, positioned as a pivotal energy carrier, is poised to revolutionize various domains, including heavy-duty transportation, aviation, heating, distributed power, and critical industrial sectors such as steelmaking, glassmaking, and semiconductor manufacturing.\r\n\r\nThe competition features 13 teams comprised of over 50 students from the Ross School of Business, Michigan Engineering, Taubman College, the College of Literature, Science, and the Arts, Ford School, the School of Information, and the School for Environment and Sustainability.\r\n\r\nTo refine their business case, each student group will collaborate with faculty and business leaders from U-M, H2Edge, Mitsubishi Power, Tenneco, Bosch, ERPI, Consumers Energy, Next Hydrogen, Argonne National Laboratory, Idaho National Laboratory, and more.\r\n\r\nAt the Final Pitch Competition, each team will present its business case to a panel of judges who will evaluate teams as entrepreneurs seeking start-up funds from early-stage investors and venture capital firms.\r\n\r\nTeams are vying for a share of the $10,000 prize pool, with the first-place team receiving $5,000, the first runner-up awarded $3,000, and the second runner-up receiving $2,000. Beyond the monetary rewards, participating teams gain invaluable real-world experience in pitching a business plan and attracting capital for the commercialization of hydrogen technology or applications.",
        "occurrence_notes":"(Space dependent)",
                "guid":"118498-21841150@events.umich.edu",
        "permalink":"http:\/\/events.umich.edu\/event\/118498",
        "building_id":"1000397",
        "building_name":"Lurie Robert H. Engin. Ctr",
        "campus_maps_id":"90",
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        "location_name":"Lurie Robert H. Engin. Ctr",
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        "cost":"",
        "tags":["Business","Center For Entrepreneurship","chemical engineering","Climate","Computational Science","Electrical Engineering and Computer Science","Energy","Engineering","Entrepreneurship","Environment","Industrial And Operations Engineering","Interdisciplinary","Materials Science","Mechanical Engineering","Michigan Engineering","Nuclear","Nuclear Engineering and Radiological Sciences","Physics","Public Policy","Science","Social Impact","Startup","Sustainability","Technical Communications"],
        "website":"https:\/\/hydrogenprize.engin.umich.edu\/",
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                "group_id":"5053",
                "website":"https:\/\/research.umich.edu\/mi-hydrogen\/"                },             {
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                "group_id":"1199",
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                "group_name":"Nuclear Engineering & Radiological Sciences",
                "group_id":"4000",
                "website":""                },             {
                "group_name":"Office of the Vice President for Research",
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    }    ,    "120740-21845200":
    {
        "datetime_modified":"20240327T122441",
        "datetime_start":"20240411T160000",
        "datetime_end":"20240411T170000",
        "has_end_time":1,
        "date_start":"2024-04-11",
        "date_end":"2024-04-11",
        "time_start":"16:00:00",
        "time_end":"17:00:00",
        "time_zone":"America\/Detroit",
        "event_title":"Interdisciplinary QC-CM Seminar | Emergent phases in quantum magnets: fractionalization, fragmentation and new particles",
        "occurrence_title":"",
        "combined_title":"Interdisciplinary QC-CM Seminar | Emergent phases in quantum magnets: fractionalization, fragmentation and new particles: Onur Erten (Arizona State University)",
        "event_subtitle":"Onur Erten (Arizona State University)",
        "event_type":"Workshop \/ Seminar",
        "event_type_id":"21",
        "description":"Moire superlattices of van der Waals materials have surfaced as new tunable quantum platforms for the realization of emergent phases. While moire-induced electronic phases have been extensively explored over the past few years, moire engineering of magnetic phases is a newer emerging topic. In the first part of my talk, I will discuss how stacking dependent interlayer exchange can be used to create novel spin textures such as skyrmions. I will illustrate this mechanism by applying it to twisted bilayers of Cr-based trihalides (1) and \u03b1-RuCl3 (2). In the second part, I will focus on quantum spin liquid bilayers and discuss how twist angle and interlayer exchange can be utilized to create new topological phases with new emergent quasiparticles such as \u2018fractionalized Goldstone bosons\u2019 in these systems (3,4,5). \r\n\r\n(1) M. Akram, H. LaBollita, D. Dey, J. Kapeghian, O. Erten, A. Botana Nano Lett. 15, 6633 (2021). \r\n(2) M. Akram, J. Kapeghian, J. Das, R. Valenti, A. Botana, O. Erten Nano Lett. 24, 890 (2024).\r\n(3) E. Nica, M. Akram, A. Vijayvargia, R. Moessner, O. Erten npj Quantum Materials 8, 9 (2023).\r\n(4) A. Vijayvargia, E. Nica, R. Moessner, Y.-M. Lu, O. Erten Phys. Rev. Research 5, L022062 (2023). \r\n(5) A. Vijayvargia, U. Seifert, O. Erten Phys. Rev. B 109, 024439 (2024).",
        "occurrence_notes":null,
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        "campus_maps_id":"163",
        "room":"335",
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        "has_livestream":0,
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        "tags":["Physics","Science"],
        "website":"",
        "sponsors":[
             {
                "group_name":"Interdisciplinary QC\/CM Seminars",
                "group_id":"3811",
                "website":""                },             {
                "group_name":"Department of Physics",
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    {
        "datetime_modified":"20240318T153153",
        "datetime_start":"20240411T160000",
        "datetime_end":"20240411T173000",
        "has_end_time":1,
        "date_start":"2024-04-11",
        "date_end":"2024-04-11",
        "time_start":"16:00:00",
        "time_end":"17:30:00",
        "time_zone":"America\/Detroit",
        "event_title":"Interreligious Solidarity in the Struggle Against Apartheid: The Role of the Muslim Community",
        "occurrence_title":"",
        "combined_title":"Interreligious Solidarity in the Struggle Against Apartheid: The Role of the Muslim Community: Dr. A. Rashied Omar",
        "event_subtitle":"Dr. A. Rashied Omar",
        "event_type":"Lecture \/ Discussion",
        "event_type_id":"13",
        "description":"Please join us for a lecture on role of South African Muslims in the anti-Apartheid struggle with Dr. Abdul Rashied Omar. \r\nLearn more about our speaker here: https:\/\/keough.nd.edu\/people\/rashied-omar\/",
        "occurrence_notes":null,
                "guid":"120276-21844501@events.umich.edu",
        "permalink":"http:\/\/events.umich.edu\/event\/120276",
        "building_id":"1000172",
        "building_name":"Rackham Graduate School (Horace H.)",
        "campus_maps_id":"71",
        "room":"Amphitheater",
        "location_name":"Rackham Graduate School (Horace H.)",
        "has_livestream":0,
        "cost":"",
        "tags":["Africa","Amas","American Culture","Arab","arab american studies","Arab And Muslim American Studies","Department Of American Culture","Discussion","Free","human rights","In Person","Lecture","Muslim","Rackham","Religious","Religious Diversity","Social Justice","Talk"],
        "website":"",
        "sponsors":[
             {
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