Berryda
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Colloquium – Alexander Maloney
Alexander Maloney, McGill University Quantum Information Theory, Black Holes, and Space-time I will describe recent progress on the relationship between quantum information theory and quantum gravity. I will review the theoretical evidence that classical space-time geometry emerges from the entanglement of more fundamental quantum mechanical degrees of freedom, and that… Read MoreSeptember 13, 2023
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Colloquium – Roger Blandford
Roger Blandford, KIPAC, Stanford Jets, Disks and Winds from Spinning Black Holes: Nature or Nurture? An alternative interpretation of discussion of slow accretion onto massive black holes in galactic nuclei is discussed. It is proposed that the disk is primarily powered by the black hole rotation, not the release of… Read MoreAugust 31, 2023
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Colloquium – John Jumper
John Jumper, Google DeepMind Highly Accurate Protein Structure Prediction and Its Applications Our work on deep learning for biology, specifically the AlphaFold system, has demonstrated that neural networks are capable of highly accurate modeling of both protein structure and protein-protein interactions. In particular, the system shows a remarkable ability to… Read MoreAugust 24, 2023
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Colloquium – Karen Kasza
Karen Kasza, Columbia University Stress management: cell packings and tissue flows in developing embryos During embryonic development, groups of cells reorganize into functional tissues with complex form and structure. Tissue reorganization can be rapid and dramatic, often occurring through striking embryo-scale flows that are mediated by the coordinated actions of… Read MoreAugust 9, 2023
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Colloquium – Stephen Taylor
Stephen Taylor, Vanderbilt University The Dawn of Galaxy-Scale Gravitational Wave Astronomy For more than 15 years, NANOGrav and other pulsar-timing array collaborations have been carefully monitoring networks of pulsars across the Milky Way. The mission was to find a tell-tale signature amid the data from all those pulsars that would… Read MoreAugust 9, 2023
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Colloquium – Heinrich Paes
Heinrich Paes, TU-Dortmund The One – How an Ancient Idea Holds the Future of Physics If quantum mechanics describes the universe, quantum entanglement merges the entire cosmos into an all-encompassing, indivisible, unified whole or “One”. It is the perspective of the observer, by means of decoherence, that lets her experience… Read MoreAugust 9, 2023
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Colloquium – Andrew Strominger
Andrew Strominger, Harvard University Gwill E. York Professor of Physics Black Holes: The Most Mysterious Objects in the Universe In the last decade black holes have come to center stage in both theoretical and observational science. Theoretically, they were shown a half-century ago by Stephen Hawking and others to obey… Read MoreFebruary 21, 2023
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Colloquium – James Dent
James Dent, Sam Houston State University Gravitational Waves and Physics Beyond the Standard ModeL The advent of gravitational wave astronomy has opened a fantastic new window on the study of physics beyond the standard model of particle physics and early universe cosmology. This talk will touch on several theoretical arenas… Read MoreFebruary 20, 2023
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Colloquium – Edgar Shaghoulian
Edgar Shaghoulian, University of California, Santa Cruz Black holes, cosmology, and quantum entanglement Stephen Hawking’s black hole information paradox is a conflict between gravity and quantum mechanics, and it has been both a crisis and a guiding light for theoretical physicists for over 40 years. I will describe recent work… Read MoreFebruary 20, 2023
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Colloquium – William H. Press
William H. Press, The University of Texas at Austin Science in the White House Increasingly, for many public issues, good science is essential to the creation of good policy. What are the mechanisms for informing and advising government policy-makers, from the President of the United States on down, about science–especially… Read MoreFebruary 20, 2023