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DTSTAMP:20250303T063218
DTSTART;TZID=America/Detroit:20250219T150000
DTEND;TZID=America/Detroit:20250219T160000
SUMMARY:Careers / Jobs:The Recruitment Road Map | West Monroe Sophomore Series Spring 2025
DESCRIPTION:The Recruitment Road Map Join us for our first session\, 'The Recruitment Road Map'. This session will cover a range of topics including career fair preparation\, understanding the recruitment timeline\, tips for fall internship recruiting\, and strategies to start preparing now for the upcoming fall recruitment season.  Sign up for one of our sessions on either February19th at 3pm CST or March 4th at 4pm CST. 
UID:132909-21872059@events.umich.edu
URL:https://events.umich.edu/event/132909
CLASS:PUBLIC
STATUS:CONFIRMED
CATEGORIES:
LOCATION:
CONTACT:
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BEGIN:VEVENT
DTSTAMP:20250123T115732
DTSTART;TZID=America/Detroit:20250219T151000
DTEND;TZID=America/Detroit:20250219T161000
SUMMARY:Lecture / Discussion:MIPSE Seminar | Investigating Jupiter’s Powerful Auroras with NASA’s Juno Mission
DESCRIPTION:Abstract:\nOf all the planets in the solar system\, Jupiter’s space environment is often described using superlatives\, e.g.\, fastest rotating planet\, strongest magnetic field\, most powerful aurora\, largest magnetosphere. These qualities make experimental pursuits at Jupiter ripe for discovery. One example\, is the pursuit of the underlying physics powering Jupiter’s auroras. Prior to 2016\, the phenomenological picture of Jupiter’s northern aurora was established based on sparse ultraviolet and X-ray observations from Earth-orbiting observatories. Those auroral maps hinted that Jupiter’s auroras were driven in a much different manner than other planets’\; however\, in situ measurements were lacking to test various hypotheses. In 2016\, NASA’s Juno mission provided the first measurements of Jupiter’s polar magnetosphere and auroral regions\, and revealed that Jupiter is more complex than theories originally established. Juno has been orbiting Jupiter for over eight years and has executed 70 polar orbits with altitudes as close as a few thousand kilometers over its one-bar “surface”. This presentation will highlight Juno’s major auroral discoveries with an emphasis on its enigmatic polar cap auroral region. We will discuss how Jupiter’s space environment gives us access to a plasma parameter regime that is unlike other planets and how we can use that to explore similar and distinct properties of planetary magnetospheres. \n\nAbout the Speaker: \nGeorge Clark received his Ph.D. in physics from the University of Texas\, San Antonio in 2014. George then joined the Johns Hopkins Applied Physics Laboratory in 2015 where his research specializes in the physics of energetic particle phenomena in the magnetospheric and auroral regions at Jupiter. He also builds energetic particle instruments for NASA and ESA missions. He is currently a science team member on NASA’s Juno mission\, the lead of the Jovian Energetic Electron sensor on ESA’s Jupiter Icy Moons Explorer mission\, and the lead of the Ultra energetic neutral atom imager on NASA’s Inter-stellar Mapping and Acceleration Probe. George was awarded the NASA early career achievement medal for his scientific contributions in understanding Jupiter’s magnetosphere and auroras.\n\nThe seminar will be conducted in person and simulcast via Zoom: https://mipse.umich.edu/seminars_2425.php#winter2025
UID:130708-21866558@events.umich.edu
URL:https://events.umich.edu/event/130708
CLASS:PUBLIC
STATUS:CONFIRMED
CATEGORIES:Talk,Space,seminar,Plasma,Physics,Michigan Engineering,In Person,Astrophysics
LOCATION:Electrical Engineering and Computer Science Building - 1003
CONTACT:
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BEGIN:VEVENT
DTSTAMP:20250217T102113
DTSTART;TZID=America/Detroit:20250219T153000
DTEND;TZID=America/Detroit:20250219T170000
SUMMARY:Workshop / Seminar:Algebraic Geometry Seminar: Dualizability of derived categories of algebraic stacks
DESCRIPTION:A fundamental result of Neeman states that the derived category of a quasi compact separated scheme X has a property known as compact generation\, which allows one to understand D(X) in terms of a simpler subcategory. In the setting of algebraic stacks\, the question of compact generation is more subtle: it turns out to fail in some cases\, and the precise generality in which it holds is unknown. Recently\, there has been increased interest in a weakening of the notion of compact generation known as dualizability\, which still allows for many of the same manipulations that compact generation is used for. In this talk I will review this circle of ideas\, and explain a result that characterizes those Noetherian algebraic stacks with affine diagonal X for which D(X) is dualizable.
UID:129384-21862603@events.umich.edu
URL:https://events.umich.edu/event/129384
CLASS:PUBLIC
STATUS:CONFIRMED
CATEGORIES:Mathematics
LOCATION:East Hall - 4096
CONTACT:
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BEGIN:VEVENT
DTSTAMP:20250116T143931
DTSTART;TZID=America/Detroit:20250219T160000
SUMMARY:Workshop / Seminar:Bartell Lecture \"Functional graphenic materials and polymers to improve human health\"
DESCRIPTION:The Sydlik group at Carnegie Mellon is developing novel strategies to improve human health through the platform materials of polymers and functional graphenic materials. Functional graphenic materials (FGMs) are prepared through chemical modification of graphene oxide\, an allotrope of carbon with abundant carbon-oxygen functionality. The Sydlik group has found FGMs to be bio- and environmentally compatible and have applied these materials in conjunction with polymers to address a number of applications for human health. We have designed FGMs to include signaling peptides and inducerions to be cell instructive for tissue regeneration\, with 3D printed scaffolds showing promise as bone regeneration scaffolds. We have designed FGMs and polymers to serve as effective scaffold materials to remove heavy metals\, including lead\, from the body\, water\, and food. Finally\, we are designing self-assembling peptides to adsorb drugs to treat non-opioid overdose. The FGMs and polymers rationally designed by the Sydlik group have shown promise to improve the landscape of human health.
UID:129105-21862156@events.umich.edu
URL:https://events.umich.edu/event/129105
CLASS:PUBLIC
STATUS:CONFIRMED
CATEGORIES:Chemistry
LOCATION:Chemistry Dow Lab
CONTACT:
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BEGIN:VEVENT
DTSTAMP:20250218T180619
DTSTART;TZID=America/Detroit:20250219T160000
DTEND;TZID=America/Detroit:20250219T170000
SUMMARY:Careers / Jobs:ChE Career Chat: Pharma/Biotech
DESCRIPTION:ChE is launching a series of ChE Career Chats for students to explore jobs in particular industry sectors. Chemical engineering applications are everywhere\, and it can be overwhelming to think about different career paths. Industry-focused panel discussions with ChE professionals can give students at all levels a glimpse into specific types of work and help you chart a path forward.\n\nAll ChE students are invited to attend. To facilitate high level industry participation\, these programs will all be virtual. Please attend any or all of them!\n\nJoin Zoom Meeting:\nhttps://umich.zoom.us/j/97659720713
UID:131942-21869560@events.umich.edu
URL:https://events.umich.edu/event/131942
CLASS:PUBLIC
STATUS:CONFIRMED
CATEGORIES:Career,chemical engineering,Free,Graduate,Michigan Engineering,Undergraduate,Virtual
LOCATION:Off Campus Location
CONTACT:
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BEGIN:VEVENT
DTSTAMP:20250219T152051
DTSTART;TZID=America/Detroit:20250219T160000
DTEND;TZID=America/Detroit:20250219T170000
SUMMARY:Workshop / Seminar:Community Dialogue at Stamps
DESCRIPTION:We invite Stamps students to this vital opportunity to share feedback\, propose ideas to improve our campus community\, and express any concerns. This mid-semester check-in allows students to directly engage with Stamps leaders and peers on important topics impacting students. Come ready to share your insights\, collaborate on solutions\, and make a positive impact. Light snacks will be provided to enhance this meaningful dialogue. Don’t miss your chance to have your voice heard and contribute to a better Stamps experience!\n
UID:132679-21871558@events.umich.edu
URL:https://events.umich.edu/event/132679
CLASS:PUBLIC
STATUS:CONFIRMED
CATEGORIES:Sessions
LOCATION:A&amp;A Building
CONTACT:
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