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장소 E6-2, #1323 
일시 2015/11/23, 1:30PM 
연사 Dr. Michael Park (Stanford University) 

What's Beyond the Standard Model? 
Lessons from Run I and what might come in Run II

 

Nov. 23 (Mon), 1:30 PM, #1323(E6-2. 1st fl.)
Dr. Michael Park, Stanford University


The Standard Model of particle physics stands as the most robustly predictive and experimentally well-tested theory ever constructed. Yet there are serious conceptual problems hidden at the core of the theory, which have become even more puzzling in light of recent data at the Large Hadron Collider. In this talk we will present an overview of the Standard Model from a broad theoretical perspective, as well as a broad summary of its major conceptual problems. We will then go on to describe some of the important ideas that have been developed for addressing these problems, how these ideas have changed in light of the results from Run I, and what kind of new physics this might lead us to expect over the coming years in Run II. 


Contact: Wonho Choe, Department of Physics (wchoe@kaist.ac.kr)

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169 2015/10/16, 3PM  E6-2, 5th fl. #5318  Dr. Pierre Pugnat , (CNRS-LNCMI)  High Magnetic Fields to Probe the sub-eV range of Particle/Astroparticle Physics - From the OSQAR experiments at CERN up to new perspectives at LNCMI-Grenoble
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166 2016/03/11-06/09  E6-2, 1501 외  박권(KAIS) 외  Physics Seminar Serises : 2016 Spring file
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163 2015/10/23, 3PM  E6-2, #5318  Dr. Helmut Soltner (Forschungszentrum Juelich)  Development of a Rogowski Coil as a new beam position monitor
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159 2015/11/19, 4PM  E6-2, #1323  Dr. Daesu Lee (University of Wisconsin-Madison)  Emergent Collective Phenomena and Functions at Reduced Dimensions
158 2015/12/09, 2PM  E6-2, #1323  Arjun G. Yodh (University of Pennsylvania)  SWELLABLE COLLOIDAL PARTICLES ARE SWELL
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» 2015/11/23, 1:30PM  E6-2, #1323  Dr. Michael Park (Stanford University)  What's Beyond the Standard Model? Lessons from Run I and what might come in Run II
153 2015/11/28, 10AM  E6-2, #1323  Dr. Suyong Jung (Korea Research Institute of Standards and Science)  Electron Tunneling Spectroscopy of Single and Bilayer Graphene with Hexagonal Boron Nitride as Tunneling Barrier