Examples of using The detector in English and their translations into Danish
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Muons from collisions at the center of the detector generally produce hits in ALL the muon layers.
how particles- products of collisions of protons- interact with the detector material and leave footprints.
Most of these originate from collisions of the beam particles outside the detector producing neutrons
This is due to the momenta of the two neutrinos that haven't been registered in the detector.
Tungsten heavy alloy stopper shield of concrete at the entrance of the detector is made of two pieces.
In this section you will learn how the detector is built and how a close look at footprints allows you to identify the particles.
In the event of total failure of the detector, this ensures that the contact is closed
Sometimes, as seen with universe 6, the detector finds two groups, in which case the Vargas pick both.
JA-111H TRB Bus module interface for wire detector This built-in module can be directly integrated into the detector.
hide their low resolution detector when it's the detector resolution that matters most.
otherwise it will damage the detector.
Finally, the detector and the RF output socket of the radio frequency output voltage,
The detector registers strikes up to 3,000 kilometers from Silkeborg.the same strike, an accurate location can be calculated.">
tiny time differences in order to ensure that all light beams reach the detector at the same time.
to the quads next to it and close to the detector.
Gravity Supersymmetry Momentum Spin Energy units Vectors Histogram Radioactivity Feynman diagrams Identifying particles When particles traverse the detector they leave electronic signals or"footprints.
Measurement Analysis Structure and Function of the ATLAS Detector Here, you will learn about the structure of the ATLAS detector and how particles interact with the detector material.