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DTSTART:20070311T020000
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DTSTAMP:20260910T181716
DTSTART;TZID=America/Detroit:20260924T132000
DTEND;TZID=America/Detroit:20260924T135000
SUMMARY:Performance:Lon Mitchell\, carillon
DESCRIPTION:Lon Mitchell performs on the Ann & Robert H. Lurie Carillon\, an instrument of 60 bells with the lowest bell (bourdon) weighing 6 tons.\n\nThirty-minute recitals are performed on the Lurie Carillon every weekday that classes are in session. During these recitals\, visitors may take the elevator to level 2 to view the largest bells\, or to level 3 to see the carillonist performing. (Visitors subject to acrophobia are recommended to visit level 2 only.) An optional spiral stairway between levels 2 and 3 allows for up-close views of some of the largest bells.
UID:151949-21912498@events.umich.edu
URL:https://events.umich.edu/event/151949
CLASS:PUBLIC
STATUS:CONFIRMED
CATEGORIES:Concert,Free,North Campus
LOCATION:Lurie Ann & Robert H. Tower
CONTACT:
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BEGIN:VEVENT
DTSTAMP:20260812T110800
DTSTART;TZID=America/Detroit:20260924T133000
DTEND;TZID=America/Detroit:20260924T143000
SUMMARY:Lecture / Discussion:ChE SEMINAR: Wenjun Zhang\, University of California\, Berkeley
DESCRIPTION:A reception with light refreshments will be held in the B10 lobby before each seminar from 1-1:30 p.m.\n\n*Abstract:*\nNatural products remain at the forefront of chemical biology\, offering both therapeutic potential and unique chemical insights. This seminar details our group’s approach to expanding the natural product landscape: from the discovery of molecules in complex ecological niches to the elucidation of rare enzymatic mechanisms. The first portion of the talk will focus on the human oral microbiome\, an underexplored reservoir of chemical diversity. I will discuss our efforts in mining for bioactive small molecules\, focusing on their role in defining the \"socio-chemical\" landscape of oral health and disease. The second half will transition into the biosynthetic logic governing unique scaffolds and functionalities of natural products. By elucidating the enzymatic machinery involved\, specifically our recent discovery and characterization of rare N-N bond-forming enzymes\, we demonstrate how understanding nature's synthetic strategies enables the production of novel analogs via synthetic biology and expands the modern biocatalytic toolkit.
UID:150175-21908320@events.umich.edu
URL:https://events.umich.edu/event/150175
CLASS:PUBLIC
STATUS:CONFIRMED
CATEGORIES:chemical engineering,graduate students,seminar
LOCATION:North Campus Research Complex Building 10 - Auditorium
CONTACT:
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