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PRODID:-//UC Irvine//CML Seminars//EN
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X-WR-CALNAME:Stochastic thermodynamics: Diffusion models for information an
 d energy transfer
X-WR-TIMEZONE:America/Los_Angeles
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TZID:America/Los_Angeles
BEGIN:DAYLIGHT
TZOFFSETFROM:-0800
TZOFFSETTO:-0700
TZNAME:PDT
DTSTART:20070311T020000
RRULE:FREQ=YEARLY;BYMONTH=3;BYDAY=2SU
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TZOFFSETFROM:-0700
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TZNAME:PST
DTSTART:20071104T020000
RRULE:FREQ=YEARLY;BYMONTH=11;BYDAY=1SU
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UID:2023-11-27-tryphon-georgiou@cml.ics.uci.edu
DTSTAMP:20231127T000000Z
SEQUENCE:57690
DTSTART;TZID=America/Los_Angeles:20231127T130000
DTEND;TZID=America/Los_Angeles:20231127T140000
SUMMARY:[CML Seminar] Tryphon Georgiou: Stochastic thermodynamics: Diffusio
 n models for information and energy transfer
LOCATION:Donald Bren Hall 4011
DESCRIPTION:Tryphon Georgiou\, Distinguished Professor of Mechanical and Ae
 rospace Engineering\, University of California\, Irvine\n\nTitle: Stochast
 ic thermodynamics: Diffusion models for information and energy transfer\n\
 nAbstract: The energetic cost of information erasure and of energy transdu
 ction can be cast as the stochastic problem to minimize entropy production
  during thermodynamic transitions. This formalism of Stochastic Thermodyna
 mics allows quantitative assessment of work exchange and entropy productio
 n for systems that are far from equilibrium. In the talk we will highlight
  the cost of Landauer's bit-erasure in finite time and explain how to obta
 in bounds on the performance of Carnot-like thermodynamic engines and of p
 rocesses that are powered by thermal anisotropy.\n\nhttps://cml.ics.uci.ed
 u/seminars/2023-11-27-tryphon-georgiou
X-ALT-DESC;FMTTYPE=text/html:<html><body><b>Tryphon Georgiou</b>\, Distingu
 ished Professor of Mechanical and Aerospace Engineering\, University of Ca
 lifornia\, Irvine<br><br><b>Title:</b> Stochastic thermodynamics: Diffusio
 n models for information and energy transfer<br><br><b>Abstract:</b> The e
 nergetic cost of information erasure and of energy transduction can be cas
 t as the stochastic problem to minimize entropy production during thermody
 namic transitions. This formalism of Stochastic Thermodynamics allows quan
 titative assessment of work exchange and entropy production for systems th
 at are far from equilibrium. In the talk we will highlight the cost of Lan
 dauer's bit-erasure in finite time and explain how to obtain bounds on the
  performance of Carnot-like thermodynamic engines and of processes that ar
 e powered by thermal anisotropy.<br><br><a href="https://cml.ics.uci.edu/s
 eminars/2023-11-27-tryphon-georgiou">https://cml.ics.uci.edu/seminars/2023
 -11-27-tryphon-georgiou</a></body></html>
URL:https://cml.ics.uci.edu/seminars/2023-11-27-tryphon-georgiou
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