Difference between revisions of "User:Draco"

 
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Blargh!
 
Blargh!
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<math>\frac{\LaTeX^{\LaTeX_\LaTeX}}{\sqrt{\LaTeX\sqrt{\LaTeX\sqrt{\LaTeX\sqrt{\LaTeX\sqrt{\LaTeX\sqrt{\LaTeX}}}}}}}</math>
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<math>\ </math> <math>asdf</math>
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<asy>
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draw((0,0)--(3,4));
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</asy>
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The closed curve in the figure is made up of <math>9</math> congruent circular arcs each of length <math>\dfrac{2\pi}{3}</math>, where each of the centers of the corresponding circles is among the vertices of a regular hexagon of side <math>2</math>. What is the area enclosed by the curve?
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[asy]
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draw(Arc((0,1),0.5,210,-30));
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label("<math>\circ</math>",(0,1));
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draw(Arc((0.865,0.5),0.5,150,270));
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label("<math>\circ</math>",(0.865,0.5));
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draw(Arc((0.865,-0.5),0.5,90,-150));
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label("<math>\circ</math>",(-0.865,0.5));
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label("<math>\circ</math>",(0.865,-0.5));
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[/asy]

Latest revision as of 14:15, 8 February 2012

Blargh!

$\frac{\LaTeX^{\LaTeX_\LaTeX}}{\sqrt{\LaTeX\sqrt{\LaTeX\sqrt{\LaTeX\sqrt{\LaTeX\sqrt{\LaTeX\sqrt{\LaTeX}}}}}}}$ (Error compiling LaTeX. Unknown error_msg)

$$ $asdf$

[asy] draw((0,0)--(3,4)); [/asy]

The closed curve in the figure is made up of $9$ congruent circular arcs each of length $\dfrac{2\pi}{3}$, where each of the centers of the corresponding circles is among the vertices of a regular hexagon of side $2$. What is the area enclosed by the curve?

[asy] draw(Arc((0,1),0.5,210,-30)); label("$\circ$",(0,1)); draw(Arc((0.865,0.5),0.5,150,270)); label("$\circ$",(0.865,0.5)); draw(Arc((0.865,-0.5),0.5,90,-150)); label("$\circ$",(-0.865,0.5)); label("$\circ$",(0.865,-0.5)); [/asy]