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UID:calendarize-computational-life-science-how-computers-physics-and-artif
 icial-intelligence-shape-our-understanding-of-how-life-works-situational-a
 wareness
DTSTAMP:20250505T120859Z
DTSTART:20250515T170000Z
DTEND:20250515T183000Z
SUMMARY:Computational Life Science: How computers\, physics\, and artifici
 al intelligence shape our understanding of how life works. Situational Awa
 reness
DESCRIPTION:Gemeinsame Veranstaltung mit dem Italienischen Generalkonsulat
 (Event in English)\nBiology is an attempt to answer outstanding questions:
  What are we made of? How do our bodies function? Why do they sometimes st
 op to function? During the last couple of centuries\, we learned that cell
 s are the minimal units of life and are made of billions of distinct molec
 ules. Although this answers part of the question of what we are made of\, 
 it does not answer how cellular functions spontaneously emerge from the in
 teraction of these billions of molecules. Thanks to breathtaking developme
 nts in structural biology\, we have started to have a precise atlas of all
  the molecules in our cells. What we want to understand now is the role of
  individual molecules and the choreography that organizes them in function
 al units\, which ultimately distinguishes a living cell from an inanimate 
 object. In this lecture\, I will discuss that gaining this understanding i
 s an outstanding challenge that requires novel concepts and an interdiscip
 linary approach. I will explain how integrating methods and theories from 
 physics\, artificial intelligence\, and modern computers provides us with 
 new\, powerful tools to understand how life is organized at the cellular l
 evel. \n\n\n
X-ALT-DESC;FMTTYPE=text/html:<p><strong>Gemeinsame Veranstaltung mit dem I
 talienischen Generalkonsulat</strong><br /><br /><span class="rot"><strong
 >(Event in English)</strong></span></p>\n<p><br />Biology is an attempt to
  answer outstanding questions: What are we made of? How do our bodies func
 tion? Why do they sometimes stop to function? During the last couple of ce
 nturies\, we learned that cells are the minimal units of life and are made
  of billions of distinct molecules. Although this answers part of the ques
 tion of what we are made of\, it does not answer how cellular functions sp
 ontaneously emerge from the interaction of these billions of molecules. Th
 anks to breathtaking developments in structural biology\, we have started 
 to have a precise atlas of all the molecules in our cells. What we want to
  understand now is the role of individual molecules and the choreography t
 hat organizes them in functional units\, which ultimately distinguishes a 
 living cell from an inanimate object. In this lecture\, I will discuss tha
 t gaining this understanding is an outstanding challenge that requires nov
 el concepts and an interdisciplinary approach. I will explain how integrat
 ing methods and theories from physics\, artificial intelligence\, and mode
 rn computers provides us with new\, powerful tools to understand how life 
 is organized at the cellular level.<br />&nbsp\;</p>\n\n\n
LOCATION:Hörsaal\, Physikalischer Verein\, Robert-Mayer-Straße 2\, 60325
  Frankfurt (t3://page?uid=44 _blank)
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