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BEGIN:VEVENT
UID:09f0af7f48a28fb2300f823931e807ac
CATEGORIES:Mathematical Physics Seminar
CREATED:20210215T130125
SUMMARY:Julia M Yeomans - Self-propelled Topological Defects
LOCATION:zoom
DESCRIPTION:Abstract: Active materials such as bacteria, molecular motors and eukaryoti
 c cells continuously transform chemical energy taken from their surrounding
 s to mechanical work. Dense active matter shows mesoscale turbulence, the e
 mergence of chaotic flow structures characterised by high vorticity and sel
 f-propelled topological defects. I shall describe the physics of active def
 ects, discussing active microfluidics, active disclinations and examples of
  topological defects in biological systems. \n \n
X-ALT-DESC;FMTTYPE=text/html:<p>Abstract: <span style="font-family: Times New Roman; font-size: medium;"
 ><span lang="EN-GB" style="font-family: 'Times New Roman',serif; mso-fareas
 t-font-family: 'Times New Roman';"><span style="font-size: medium;">Active 
 materials such as bacteria, molecular motors and eukaryotic cells continuou
 sly transform chemical energy taken from their surroundings to mechanical w
 ork. Dense active matter shows mesoscale turbulence, the emergence of chaot
 ic flow structures characterised by high vorticity and self-propelled topol
 ogical defects.&nbsp;I shall describe the physics of active defects, discus
 sing active microfluidics, active disclinations and examples of topological
  defects in biological systems. </span></span></span></p><p><span style="fo
 nt-family: Times New Roman; font-size: medium;"> </span></p>
CONTACT:Julia M Yeomans - University of Oxford
DTSTAMP:20260830T073651
DTSTART;TZID=America/New_York:20210224T104500
DTEND;TZID=America/New_York:20210224T114500
SEQUENCE:0
TRANSP:OPAQUE
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