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[[Image:popsicle_stick_pivot_point.png|center|thumb|600px|Figure : ]]
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[[Image:popsicle_stick_fiber_angle9.png|center|thumb|600px|Figure : ]]
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[[Image:popsicle_stick_inch_angle.png|center|thumb|600px|Figure : ]]
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[[Image:popsicle_stick_fiber_angle8.png|center|thumb|600px|Figure : ]]
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[[Image:Old-Popsicle-Stick-CAD-iso.png|center|thumb|600px|Figure : ]]
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[[Image:Old-Popsicle-Stick-CAD-iso3.png|center|thumb|600px|Figure : ]]
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[[Image:Old-Popsicle-Stick-CAD-top.png|center|thumb|600px|Figure : ]]
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[[Image:Fiber_Array.png|center|thumb|1200px|Figure 9: Electron view of the TAGM scintillating fiber array.]]
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<gallery caption="Transmission of scintillation light" widths="300px" heights="300px" class="center">
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  Fiber_lg.jpg|Figure 10: An end view of a 2 mm<sup>2</sup> light guide fiber (BCF-98). A highly polished end such as the one shown here is required on the light guide end that interfaces with the SiPM for maximum light transmission.
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  Fiber.png|Figure 11: Image of the mating joint of 2 cm. of scintillating fiber BCF-20 (left) joined to 165 cm. light guide fiber BCF-98 (right). This picture was taken during the prototyping phase when optical epoxy was used to mate the fibers, the current method of joining fibers uses thermal fusing.
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</gallery>
      
[[Image:SciFi-on-Popsicle-Stick.png|center|thumb|400px|Figure 12: CAD image of a bundle support (blue) with a mounted 5x6 fiber bundle. The 'S' bend minimizes the amount of fiber in the path of the electrons.]]
 
[[Image:SciFi-on-Popsicle-Stick.png|center|thumb|400px|Figure 12: CAD image of a bundle support (blue) with a mounted 5x6 fiber bundle. The 'S' bend minimizes the amount of fiber in the path of the electrons.]]
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[https://halldweb.jlab.org/wiki/images/e/e0/TaggerHodoscopeEnergy-1-2017.pdf Dan Sober Presentation]
      
==Final==
 
==Final==
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