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DTSTART:20070311T020000
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DTSTAMP:20260908T151707
DTSTART;TZID=America/Detroit:20260923T160000
DTEND;TZID=America/Detroit:20260923T170000
SUMMARY:Social / Informal Gathering:German Convo on the Go
DESCRIPTION:Meet at Burton Tower for a 1-hour walk and talk in German with Mary Gell (magell@umich.edu). This event happens 'rain or shine.' Open to speakers of German at all levels.
UID:151752-21912118@events.umich.edu
URL:https://events.umich.edu/event/151752
CLASS:PUBLIC
STATUS:CONFIRMED
CATEGORIES:European,German,German Studies,Germanic Languages And Literatures,Humanities,Language
LOCATION:Burton Memorial Tower - Meet Outside the Tower
CONTACT:
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BEGIN:VEVENT
DTSTAMP:20260921T162200
DTSTART;TZID=America/Detroit:20260923T160000
DTEND;TZID=America/Detroit:20260923T171500
SUMMARY:Workshop / Seminar:LSA Transfer Information Session
DESCRIPTION:Join the LSA Transfer Recruitment Team for our virtual sessions where we will discuss LSA requirements\, transfer credit\, pre-transfer academic advising\, LSA opportunities and other transfer tidbits.\n\nRegistration is required. Register using link to the right
UID:141040-21913434@events.umich.edu
URL:https://events.umich.edu/event/141040
CLASS:PUBLIC
STATUS:CONFIRMED
CATEGORIES:Transfer Students
LOCATION:Off Campus Location
CONTACT:
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BEGIN:VEVENT
DTSTAMP:20260913T082917
DTSTART;TZID=America/Detroit:20260923T160000
DTEND;TZID=America/Detroit:20260923T170000
SUMMARY:Workshop / Seminar:Probability and Analysis Seminar: The Gamma-disordered Aztec diamond
DESCRIPTION:Abstract: The dimer model\, i.e. random perfect matchings of a bipartite graph\, is a classical object about which much is known. As soon as one biases the probability measure by edge weights which are themselves random\, very little is known rigorously\, though physicists have studied such models for several decades and made extensive predictions. I will discuss a new integrable model in this class (the Gamma-disordered Aztec diamond) which allows us to prove results on the free energy\, and also exhibits surprising relations to integrable polymer models which lead to probabilistic results on tilings. Joint work with Maurice Duits (KTH)\, https://arxiv.org/abs/2512.03033.
UID:151182-21911041@events.umich.edu
URL:https://events.umich.edu/event/151182
CLASS:PUBLIC
STATUS:CONFIRMED
CATEGORIES:Mathematics
LOCATION:East Hall - 4088
CONTACT:
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BEGIN:VEVENT
DTSTAMP:20260917T032649
DTSTART;TZID=America/Detroit:20260923T160000
DTEND;TZID=America/Detroit:20260923T172000
SUMMARY:Workshop / Seminar:RTG SEMINAR GEOMETRY\, TOPOLOGY\, DYNAMICS: Global Rigidity of Codimenson 1 Actions
DESCRIPTION:This talk concerns the geometric classification of smooth\, locally free\, codimension-one actions of higher-rank simple Lie groups G (e.g.\, SL(n\,R)\, n at least 3) on closed manifolds M. We show that M is G-equivariantly diffeomorphic (up to a finite cover) to  G/\Gamma x S^1\, for a uniform lattice \Gamma of G\, if and only if it admits a probability measure that is mixing for a minimal parabolic subgroup P of G. When such a P-mixing probability measure does not exist\, we show that M is a fiber bundle over a boundary space of G\, i.e.\, over G/Q for some parabolic subgroup Q of G. This result is in the spirit of the Zimmer program.
UID:150235-21908433@events.umich.edu
URL:https://events.umich.edu/event/150235
CLASS:PUBLIC
STATUS:CONFIRMED
CATEGORIES:Mathematics
LOCATION:East Hall - 3866
CONTACT:
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BEGIN:VEVENT
DTSTAMP:20260920T210759
DTSTART;TZID=America/Detroit:20260923T160000
DTEND;TZID=America/Detroit:20260923T170000
SUMMARY:Workshop / Seminar:Student AIM Seminar: A Mathematical Introduction to Auxiliary-field Quantum Monte Carlo
DESCRIPTION:Auxiliary-field quantum Monte Carlo with the phaseless constraint (ph-AFQMC) is one of the leading candidates for ground state energy calculations for materials and molecules of moderate scale. This method corresponds with efficiently simulating an imaginary time evolution on a manifold of single Slater determinants. In this chalk talk\, I will build up the theory of ph-AFQMC assuming no background in quantum mechanics or Monte Carlo methods. I will explain how it works\, why it is efficient\, and demonstrate why the phaseless constraint is necessary. If time permits\, I will also briefly show how to download and use the SAFIRE library (safire.flatironinstitute.org) for doing AFQMC calculations on your own.
UID:152486-21913816@events.umich.edu
URL:https://events.umich.edu/event/152486
CLASS:PUBLIC
STATUS:CONFIRMED
CATEGORIES:Applied Mathematics,Quantum Computing
LOCATION:East Hall - 3088
CONTACT:
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