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  1. Results that match 1 of 2 words

  2. MINOS | High Energy Physics

    https://www.hep.phy.cam.ac.uk/MINOS
    This allowed MINOS to perform direct tests of CPT conservation in the neutrino sector.
  3. ATLAS ITK | High Energy Physics

    https://www.hep.phy.cam.ac.uk/ITK
    We aim to test around 3,000 sensors for the project, as well as producing and testing around 1,000 of the 6,000 required modules in our facilities at the
  4. Perturbative QCD | High Energy Physics

    https://www.hep.phy.cam.ac.uk/research/perturbative-qcd
    By studying such events we can test QCD. The fundamental parameter governing QCD is the quark-gluon coupling constant alpha_s. ... This consistency is a valuable test of the theory. You can read the whole paper by clicking here.
  5. LC-ABD | High Energy Physics

    https://www.hep.phy.cam.ac.uk/LC-ABD
    A more realistic test of a spectrometer-like system including BPMs and a chicane of magnets was provided by the T474 group using End Station A at SLAC.
  6. Lally archive

    https://www.hep.phy.cam.ac.uk/~lester/lally/index.html
    10 Sep 2013: runmc Pythia6:423 --beams pp:14TeV etc and My test games are all in cd /usera/lester/proj/utils/MCGen/Rivet-1.6.0/LESTER mkfifo /tmp/fifo.hepmc agile-runmc
  7. https://www.hep.phy.cam.ac.uk/rss.xml

    https://www.hep.phy.cam.ac.uk/rss.xml
    p</i> collisions at the LHC will test the Standard Model at the highest energies yet achieved on Earth (14 TeV). ... Precision measurements of Standard Model processes will be vital at ATLAS, both to test the theory and to understand possible backgrounds
  8. Mark Thomson's Home Page

    https://www.hep.phy.cam.ac.uk/~thomson/
    29 Mar 2018: The OPAL Experiment at LEP. Theexperiment ran from 1989-2000. It was designed to test the Standard Model of the electroweak interaction with unprecedented precision.
  9. MINOS Beam Analyses at Cambridge | High Energy Physics

    https://www.hep.phy.cam.ac.uk/Minos/MinosBeam
    The predicted Charged current spectrum can be compared to the measured one to test these assumptions and to constrain the parameters.
  10. Cambridge MicroBooNE Group

    https://www.hep.phy.cam.ac.uk/microboone/
    MicroBooNE has a unique electron-photon discrimination power that will allow us to confirm or reject the MiniBooNE excess and, if confirmed, to test many of the models that have been
  11. QCD at LEP 2 | High Energy Physics

    https://www.hep.phy.cam.ac.uk/research/qcd-lep-2
    By comparing the data at LEP1 and LEP2, recorded with the same detector, we expect to test these features of QCD with minimal systematic uncertainties.

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