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<p>Now we know the focal plane crossing locations for the center of the first and sixth SciFi columns in our first bundle, as depicted in Figure 1 by the endpoints of &Delta;x. Additionally, we know the &beta; angle of the first bundle (noted as &beta;<sub>avg</sub> above), which gives us the optimal alignment for each fiber in the bundle to their respective electron's path. The &beta; angles for the first and sixth columns will be off by the same magnitude, but with opposite signs.</p>
 
<p>Now we know the focal plane crossing locations for the center of the first and sixth SciFi columns in our first bundle, as depicted in Figure 1 by the endpoints of &Delta;x. Additionally, we know the &beta; angle of the first bundle (noted as &beta;<sub>avg</sub> above), which gives us the optimal alignment for each fiber in the bundle to their respective electron's path. The &beta; angles for the first and sixth columns will be off by the same magnitude, but with opposite signs.</p>
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[[Image:e_path_in_Bundle.png|center|thumb|800px|Figure 2: Sketch showing the path of electrons that pass through the center of the fiber columns near the focal plane. At the back-end of the 2 cm. SciFi a misalignment of around 0.03 mm (with respect the the fiber's axis) results from using an averaged &beta; angle for the bundle support location.]]
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[[Image:e_path_in_Bundle.png|center|thumb|800px|Figure 2: Sketch showing the path of electrons that pass through the center of the fiber columns near the focal plane. At the back-end of the 2 cm. SciFi a misalignment of around 0.03 cm (with respect the the fiber's axis) results from using an averaged &beta; angle for the bundle support location.]]
     
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