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X-WR-CALNAME:Physics &amp; Astronomy
X-ORIGINAL-URL:https://uwm.edu/physics
X-WR-CALDESC:Events for Physics &amp; Astronomy
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DTSTART;TZID=America/Chicago:20180302T153000
DTEND;TZID=America/Chicago:20180302T163000
DTSTAMP:20180111T212444Z
CREATED:20180111T153652Z
LAST-MODIFIED:20180111T212444Z
UID:10390515-1520004600-1520008200@uwm.edu
SUMMARY:Physics Colloquium: Professor Ed Brown
DESCRIPTION:Professor Ed Brown\, Michigan State University\nAccreting Neutron Stars and the Physics of Dense Matter \nNeutron stars are composed of the densest observable matter in nature and occupy the intellectual frontier between astrophysics\, nuclear physics\, and\, now\, gravitational physics.  Current and planned nuclear experiments on heavy nuclei and observations of neutron stars in both electromagnetic and gravitational waves will be exploring the nature of dense matter from complimentary approaches.  Many observed neutron stars accrete hydrogen- and helium-rich matter from a companion star.  During the slow compression to nuclear density the accreted matter is transmuted from being proton-rich to being proton-poor.  These reactions affect many observable phenomena — from energetic explosions on the neutron star’s surface to cooling of the surface layers — that in turn inform us about the nature of the deep interior of the neutron star.  \nIn this talk\, I shall describe what recent astronomical observations and nuclear physics experiments are telling us about the nature of matter at nuclear densities.
URL:https://uwm.edu/physics/event/physics-colloquium-professor-ed-brown/
LOCATION:Lapham 160\, 3209 N. Maryland Ave.\, Milwaukee\, WI\, 53211\, United States
CATEGORIES:Physics Colloquia
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X-APPLE-STRUCTURED-LOCATION;VALUE=URI;X-ADDRESS=Lapham 160 3209 N. Maryland Ave. Milwaukee WI 53211 United States;X-APPLE-RADIUS=500;X-TITLE=3209 N. Maryland Ave.:geo:-87.8840564,43.0757204
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BEGIN:VEVENT
DTSTART;TZID=America/Chicago:20180309T153000
DTEND;TZID=America/Chicago:20180309T163000
DTSTAMP:20180216T194152Z
CREATED:20180108T222253Z
LAST-MODIFIED:20180216T194152Z
UID:10390511-1520609400-1520613000@uwm.edu
SUMMARY:Physics Colloquium: Professor Joachim Frank -- 2017 Nobel Laureate in Chemistry
DESCRIPTION:Professor Joachim Frank\, Columbia University \n\n\nNew Opportunities in Single-particle Cryo-EM: Mapping States in an Ensemble\, Trapping Short-lived States \n\nSingle-particle cryo-EM provides experimental access to large ensembles of biological molecules\, but current methods of analysis fall short of mining the rich information buried in the data sets.  In addition\, the length of time of sample preparation in the normal experimental setup precludes the investigation of short-lived states.  New methods of data analysis pioneered in a collaboration with Abbas Ourmazd’s group\, and new experimental methods for trapping of states with a life time of 10-1000 ms both offer opportunities for research that is more function-oriented than current methodology. \n—–\nAdditional seating avaialble in KIRC 1150
URL:https://uwm.edu/physics/event/physics-colloquium-joachim-frank/
LOCATION:Lapham 162\, 3209 N. Maryland Ave.\, Milwaukee\, 53211
CATEGORIES:Physics Colloquia
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GEO:43.0757204;-87.8840564
X-APPLE-STRUCTURED-LOCATION;VALUE=URI;X-ADDRESS=Lapham 162 3209 N. Maryland Ave. Milwaukee 53211;X-APPLE-RADIUS=500;X-TITLE=3209 N. Maryland Ave.:geo:-87.8840564,43.0757204
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BEGIN:VEVENT
DTSTART;TZID=America/Chicago:20180316T153000
DTEND;TZID=America/Chicago:20180316T163000
DTSTAMP:20180213T172853Z
CREATED:20180111T153820Z
LAST-MODIFIED:20180213T172853Z
UID:10390517-1521214200-1521217800@uwm.edu
SUMMARY:Physics Colloquium: Dr. Michael Geracie
DESCRIPTION:Dr. Michael Geracie\, Postdoc in the Center for Quantum Mathematics & Physics (QMAP) UC-Davis\nGalilean Geometry in Condensed Matter Physics \nIn this talk\, we discuss methods and applications of Newton-Cartan geometry in condensed matter systems. Newton-Cartan geometry provides an efficient means to impose Galilean spacetime symmetries within field theory\, which has historically been much trickier than the relativistic case.  \nWe will review these issues and discuss applications in condensed matter systems with an emphasis on superfluid transport
URL:https://uwm.edu/physics/event/physics-colloquium-dr-michael-geracie/
LOCATION:Lapham 160\, 3209 N. Maryland Ave.\, Milwaukee\, WI\, 53211\, United States
CATEGORIES:Physics Colloquia
X-TRIBE-STATUS:
GEO:43.0757204;-87.8840564
X-APPLE-STRUCTURED-LOCATION;VALUE=URI;X-ADDRESS=Lapham 160 3209 N. Maryland Ave. Milwaukee WI 53211 United States;X-APPLE-RADIUS=500;X-TITLE=3209 N. Maryland Ave.:geo:-87.8840564,43.0757204
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BEGIN:VEVENT
DTSTART;VALUE=DATE:20180330
DTEND;VALUE=DATE:20180331
DTSTAMP:20180326T144319Z
CREATED:20180111T154037Z
LAST-MODIFIED:20180326T144319Z
UID:10390519-1522368000-1522454399@uwm.edu
SUMMARY:Physics Colloquium: No Colloquium 3/30/18
DESCRIPTION:There is currently no Physics Colloquium scheduled for Friday\, March 30 2018.
URL:https://uwm.edu/physics/event/physics-colloquium-no-3-30-18/
LOCATION:WI
CATEGORIES:Physics Colloquia
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