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A.D.O.M Airborne.Detector.of.Muons Tye Barba Anna Chang Natalina DeFusco David Hood.

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Presentation on theme: "A.D.O.M Airborne.Detector.of.Muons Tye Barba Anna Chang Natalina DeFusco David Hood."— Presentation transcript:

1 A.D.O.M Airborne.Detector.of.Muons Tye Barba Anna Chang Natalina DeFusco David Hood

2 Background Info A muon is an elementary particle that is a very heavy electron Lifetime of 2.2 microseconds, makes up more then half of cosmic radiation Created when cosmic rays (mostly protons) from deep space hit the earth’s atmosphere at about 15,000m

3 Experiment Description Two Photomultiplier tubes (PMT), a scintillator panel and a QNET board are sent up to 1000 ft to detect a change in the rate of muons Hypothesis- more muons will be detected at a higher altitude

4 Description of equipment Scintillator panel PMT QNET board (a)‏ X-BEE Transmitter (b)‏ Power Supply (c)‏ (a)‏ (b)‏ (c)‏

5 Procedure A gondola was constructed and attached to a weather balloon and lifted to 1000 ft. Data was taken for 30 min. A XBEE transmitter transmits the data to a receiver on the ground. The counts are graphed and analyzed

6 The Data At ground level the rate was 2.6 counts per minute At 766ft the rate was 94.1 counts per minute We did have a very large discrepancy between the rates from the ground and at 766ft About 36 times more muons at 766ft than at ground level

7 Sample Data E966E0C7 BB 01 00 01 00 01 00 01 00000000 0 0 0 0 8 +0000 E966E0C8 01 30 00 01 00 01 00 01 00000000 0 0 0 0 8 +0000 B5912928 B7 01 00 01 00 01 00 01 00000000 0 0 0 0 8 +0000 B5912929 01 23 00 01 00 01 00 01 00000000 0 0 0 0 8 +0000 E53FE6DC A9 2C 00 01 00 01 00 01 00000000 0 0 0 0 8 +0000 66F9087C B2 3D 00 01 00 01 00 01 00000000 0 0 0 0 8 +0000 A54678A5 A6 29 00 01 00 01 00 01 00000000 0 0 0 0 8 +0000 61B26F7C B2 35 00 01 00 01 00 01 00000000 0 0 0 0 8 +0000 13FA3F9F AB 37 00 01 00 01 00 01 00000000 0 0 0 0 8 +0000 99063824 A4 29 00 01 00 01 00 01 00000000 0 0 0 0 8 +0000 E4435891 AC 35 00 01 00 01 00 01 00000000 0 0 0 0 8 +0000 021CEF6D BE 01 00 01 00 01 00 01 00000000 0 0 0 0 8 +0000 ][|\| |-|3X/-\|)3(][/\/\/-\|_!!! (hexadecimal)‏

8 Conclusion We checked the PMT and threshold voltages For this test, the data is valid If repeated, the data would probably change To improve, we would take more sets of data to reduce the error and take an average


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