Difference between revisions of "Left Hand Wall"
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+ | <center><math>\underline{\textbf{Navigation}}</math> | ||
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+ | [[Right_Hand_Wall|<math>\vartriangleleft </math>]] | ||
+ | [[VanWasshenova_Thesis#Determining_wire-theta_correspondence|<math>\triangle </math>]] | ||
+ | [[The_Ellipse|<math>\vartriangleright </math>]] | ||
+ | |||
+ | </center> | ||
+ | |||
+ | |||
<center><math>x=-y\ cot\ 29.5^{\circ}+0.09156</math></center> | <center><math>x=-y\ cot\ 29.5^{\circ}+0.09156</math></center> | ||
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<center><math>x''=-2.299843\ y''+.113069</math></center> | <center><math>x''=-2.299843\ y''+.113069</math></center> | ||
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− | + | [[File:leftwall.png]] | |
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− | + | ||
− | + | ---- | |
− | + | ||
− | + | ||
− | + | <center><math>\underline{\textbf{Navigation}}</math> | |
− | </ | + | |
+ | [[Right_Hand_Wall|<math>\vartriangleleft </math>]] | ||
+ | [[VanWasshenova_Thesis#Determining_wire-theta_correspondence|<math>\triangle </math>]] | ||
+ | [[The_Ellipse|<math>\vartriangleright </math>]] | ||
+ | |||
+ | </center> |
Latest revision as of 20:33, 15 May 2018
Parameterizing this
where the negative sign is applied to the sine function by the even odd relationships of cosine and sine, i.e. ( sin(-t)=-sin(t), cos(-t)=cos(t)) and the fact that the y component is in the 4th quadrant.
Using the equation for y we can solve for t
Substituting this into the expression for x