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UID:mlp_10126
SUMMARY:Prof. Robert Mann: The Chemistry of Black Holes
DTSTAMP:20260915T170000Z
DTSTART:20260915T170000Z
DTEND:20260915T180000Z
DESCRIPTION:Water evaporates into steam\, polymers change into glass\, and helium can become a superfluid.  Remarkably\, black holes can exhibit all these chemical phenomena and more! How is this possible?\nCome learn how the latest research\, which takes into account the properties of the quantum vacuum\, has changed our view of black holes.\nAbstract: \nBlack Holes are amongst the strangest objects in the universe.  They form from the collapse of matter into an object whose gravitational pull is so strong\, nothing can escape from them. Yet a black hole also radiates heat like a blackbody\, with a temperature equal to its  surface gravity\, an entropy equal to its area\, and an energy equal to its mass.   In recent years new research that takes into account the pressure of the vacuum has  transformed our perspective on black holes. They behave like systems we see in chemistry laboratories: they can condense from a gas-like state into a liquid-like state\, they can have transitions of the type seen in gels\, polymers\, and even superfluids\, and they can even be turned into heat engines!   I will outline the foundations of this “black hole chemistry” and highlight both the new phenomena that  have been recently discovered and their implications for our understanding of gravitational physics.\nA lecture in English without translation. \nYou can reserve your place using the online form
LOCATION:Ústřední knihovna (Malý sál)
URL;VALUE=URI:https://www.mlp.cz/cz/akce/prof-robert-mann-chemistry-black-holes/10126
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