Difference between revisions of "Kerr - June 24, 2016"

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[[file:distancepower0isfoil.jpeg|thumb|left|upright=1.5|Here is power related to distance of magnets. Where 0 is the foil surface.]]
 
[[file:distancepower0isfoil.jpeg|thumb|left|upright=1.5|Here is power related to distance of magnets. Where 0 is the foil surface.]]
 
[[file:bfieldvsrotation.jpeg|thumb|upright=1.5|center|This graph seems quite interesting. We achieved a total rotation of .11 degrees with one polarity and .15 deg with the opposite.]]
 
[[file:bfieldvsrotation.jpeg|thumb|upright=1.5|center|This graph seems quite interesting. We achieved a total rotation of .11 degrees with one polarity and .15 deg with the opposite.]]
[[file:reversedpolarity.jpeg|thumb|right|upright=2|Here is Field strength versus power.]]
+
[[file:reversedpolarity.jpeg|thumb|right|upright=1.5|Here is Field strength versus power.]]
 
[[file:aerialview.jpeg|thumb|An aerial view of the setup so far]]
 
[[file:aerialview.jpeg|thumb|An aerial view of the setup so far]]
 
[[file:Magnetapp.jpeg|thumb|The most recent, and hopefully last, modification to the magnet holding apparatus. The Micrometer has a range of 25 mm.]]
 
[[file:Magnetapp.jpeg|thumb|The most recent, and hopefully last, modification to the magnet holding apparatus. The Micrometer has a range of 25 mm.]]

Revision as of 15:57, 24 June 2016

Here is power related to distance of magnets. Where 0 is the foil surface.
This graph seems quite interesting. We achieved a total rotation of .11 degrees with one polarity and .15 deg with the opposite.
Here is Field strength versus power.
An aerial view of the setup so far
The most recent, and hopefully last, modification to the magnet holding apparatus. The Micrometer has a range of 25 mm.


Original excel file with this data set: Media:Pickoffdatagreen.xlsx