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CALSCALE:GREGORIAN
METHOD:PUBLISH
BEGIN:VEVENT
DTSTAMP:20260607T022055Z
UID:https://www.mpip-mainz.mpg.de/events/26716/536464
DTSTART:20201215T130000Z
DTEND:20201215T140000Z
CLASS:PUBLIC
CREATED:20201203T125649Z
DESCRIPTION:External fields\, thermal and electromagnetic\, induce a range 
 of non-equilibrium effects in complex fluids consisting of nanoparticle su
 spensions (Soret\, Seebeck\, Peltier effects)\, which can be exploited in 
 energy conversion (thermoelectrics)\, analytical devices for detection of 
 biomolecules\, or nanoparticle transport and assembly. The combination of 
 Non-Equilibrium multiscale simulations and theory has paved the way to exp
 lain the physical behaviour of complex fluids under external fields\, show
 ing that their response is much richer than previously predicted. I will d
 iscuss how simulation techniques can be used to obtain thermophysical prop
 erties relevant in energy conversion problems and to uncover novel non-equ
 ilibrium effects in complex fluids\, associated to the coupling of interna
 l degrees of freedom of molecules and colloids with thermal fields.\nVortr
 agende(r): Pof. Fernando Bremse
LAST-MODIFIED:20201203T125743Z
LOCATION:Digital see link
ORGANIZER;CN=Robinson Cortes Huerto:mailto:corteshu@mpip-mainz.mpg.de
SUMMARY:Taming complex fluids with thermal fields
URL;VALUE=URI:https://www.mpip-mainz.mpg.de/events/26716/536464
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