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FSU-MATH2400-Project4
FSU-MATH2400-Project4
This is the fourth project in Calculus 2 at Fitchburg State. Spring 2017.
Sarah Wright
Measurement of invisible products from Muon Decay
Measurement of invisible products from Muon Decay
Muons compose the penetrating component of Cosmic Rays. At sea level, they constitute the largest part of Secondary Cosmic Rays, giving an average flux of ≈ 100 m−2s−1sr−1. The aim of our experiment is to estimate, from muon decay, the mean lifetime and the mass of invisible products. Our experimental setup includes four detectors: three of them are plastic scintillators and compose the trigger system, while the last one is a liquid scintillator which measures the particles energy. All these scintillators are read by photomultipliers. Trigger and pulse thresholds are computed by logical and temporal modules in a VME crate. The Data Acquisition System has been verified to work properly. It is composed of two fADCs modules, one I/O Register, one Motorola computer and a Farm. The liquid scintillator has been calibrated in energy using both passing muons and 60CO gamma source. Thanks to the charge-energy conversion factor we estimated electron energy spectrum. In particular we selected a sample of decay events by estimating muon mean lifetime τμ = 2.19 ± 0.34 μs; then we finally extrapolated an upper limit for invisible products mass mν < 5.99 ± 0.73 MeV/c2.
Valentina Vecchio, Giulio Settanta, Cristina Martellini, Eleonora Diociaiuti
MDA HW1
MDA HW1
Multivariate analysis
Mbukam Edward
Codage Cours Bases
Codage Cours Bases
Cours Latex sur les Bases d'entiers
aaron
Solutions Document
Solutions Document
This is the solutions document for a mock AMC10.
Sean Li
Lagrange's Theorem
Lagrange's Theorem
Lagrange's Theorem
Shateil French
HW1: Linear System Theory (ECE532)
HW1: Linear System Theory (ECE532)
HW1: Linear System Theory (ECE532)
thanh nguyentang
CS 155 HW 9
CS 155 HW 9
CS 155 HW 9
Gabe

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