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PRODID:-//UC Irvine//CML Seminars//EN
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METHOD:PUBLISH
X-WR-CALNAME:Deep Learning in Science
X-WR-TIMEZONE:America/Los_Angeles
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TZID:America/Los_Angeles
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TZOFFSETFROM:-0800
TZOFFSETTO:-0700
TZNAME:PDT
DTSTART:20070311T020000
RRULE:FREQ=YEARLY;BYMONTH=3;BYDAY=2SU
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DTSTART:20071104T020000
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UID:2023-05-08-pierre-baldi-and-alexander-shmakov@cml.ics.uci.edu
DTSTAMP:20230508T000000Z
SEQUENCE:57690
DTSTART;TZID=America/Los_Angeles:20230508T130000
DTEND;TZID=America/Los_Angeles:20230508T140000
SUMMARY:[CML Seminar] Pierre Baldi and Alexander Shmakov: Deep Learning in 
 Science
LOCATION:Donald Bren Hall 4011
DESCRIPTION:Pierre Baldi and Alexander Shmakov\, Department of Computer Sci
 ence\, UC Irvine\n\nTitle: Deep Learning in Science\n\nAbstract: The Baldi
  group will present ongoing progress in the theory and applications of dee
 p learning. On the theory side\, we will discuss homogeneous activation fu
 nctions and their important connections to the concept of generalized neur
 al balance. On the application side\, we will present applications of neur
 al transformers to physics\, in particular for the assignment of observati
 on measurements to the leaves of partial Feynman diagrams in particle phys
 ics. In these applications\, the permutation invariance properties of tran
 sformers are used to capture fundamental symmetries (e.g. matter vs antima
 tter) in the laws of physics.\n\nhttps://cml.ics.uci.edu/seminars/2023-05-
 08-pierre-baldi-and-alexander-shmakov
X-ALT-DESC;FMTTYPE=text/html:<html><body><b>Pierre Baldi and Alexander Shma
 kov</b>\, Department of Computer Science\, UC Irvine<br><br><b>Title:</b> 
 Deep Learning in Science<br><br><b>Abstract:</b> The Baldi group will pres
 ent ongoing progress in the theory and applications of deep learning. On t
 he theory side\, we will discuss homogeneous activation functions and thei
 r important connections to the concept of generalized neural balance. On t
 he application side\, we will present applications of neural transformers 
 to physics\, in particular for the assignment of observation measurements 
 to the leaves of partial Feynman diagrams in particle physics. In these ap
 plications\, the permutation invariance properties of transformers are use
 d to capture fundamental symmetries (e.g. matter vs antimatter) in the law
 s of physics.<br><br><a href="https://cml.ics.uci.edu/seminars/2023-05-08-
 pierre-baldi-and-alexander-shmakov">https://cml.ics.uci.edu/seminars/2023-
 05-08-pierre-baldi-and-alexander-shmakov</a></body></html>
URL:https://cml.ics.uci.edu/seminars/2023-05-08-pierre-baldi-and-alexander-
 shmakov
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