Results 231 to 240 of about 140,672 (257)
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How the LHC came to be

Nature, 2007
Approval of a project the size of the Large Hadron Collider is an exercise in politics and high finance.
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FROM BCS TO THE LHC

International Journal of Modern Physics A, 2008
Reflections on spontaneous symmetry breaking, and the connection between condensed matter physics and particle physics, as given in a talk at a symposium at the University of Illinois in Urbana, celebrating the 50th anniversary of the theory of superconductivity.
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TOP PHYSICS AT THE LHC

Deep Inelastic Scattering DIS 2006, 2007
Since its discovery at Tevatron in 1995, the top quark has been studied with an increasing level of precision by the CDF and D0 experiments. However most of the measurements are still statistically limited and larger top samples are needed to open a window on new physics.
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Challenges in Monte Carlo Event Generator Software for High-Luminosity LHC

Computing and Software for Big Science, 2021
E Yazgan, J A Mcfayden, A G Buckley
exaly  

Photonuclear J/ψ production at the LHC: Proton-based versus nuclear dipole scattering amplitudes

Physics Letters, Section B: Nuclear, Elementary Particle and High-Energy Physics, 2021
D Bendova, J Cepila, J G Contreras
exaly  

Parton distributions with LHC data

Nuclear Physics B, 2013
Richard D Ball   +2 more
exaly  

Physics opportunities of a fixed-target experiment using LHC beams

Physics Reports, 2013
Y Ikeda, C Hadjidakis, J P Lansberg
exaly  

CheckMATE: Confronting your favourite new physics model with LHC data

Computer Physics Communications, 2015
Jong Soo Kim, Jamie Tattersall
exaly  

The LHC:

Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 2001
openaire   +1 more source

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