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Description of detector performance is currently based on quality metrics, such as the Luminescence efficiency, the Modulation Transfer Function (MTF), the Noise Power Spectrum (NPS) and the Detective Quantum Efficiency (DQE) can be defined and evaluated.
Before we start our description of detector positions and their influence on detector performance, we summarise the descriptions of the described algorithms in Table 1.
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So in this case, H also includes the effects of possible inaccuracy in the description of the detector solid angle, the thickness of the detector crystal, the thickness of the absorber layer, and so forth.
The detector signal is estimated from a simple analytical model and compared with a more quantitative description of the detector behaviour obtained from numerical simulations and with experimental results for photon energies between 6 and 72 MeV.
We present a description of the detector and selected results from the test flight.
The technical description of the detector is followed by the presentation of its performance.
A description of the detector's design and of its performances is presented.
A detailed description of the detector layout and its working principle is presented.
Specifically, the development of a material description of the detector and simulations of monopole production and propagation at MoEDAL.
A description of the detector and a brief review of selected performance results from the test flight are presented.
We give a description of the detector and report about various technological achievements required by this challenging project.
Write better and faster with AI suggestions while staying true to your unique style.
Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com