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$$ \sum_{i=0}^{100} x_i y_i^3 $$
$$ {{{#!gnuplot
normaldistribution(x)=exp(-(x-1)**2/(2*(0.6)**2))/(sqrt(2*pi)*0.6)rx=3*0.6
plot [1-rx:1+rx] normaldistribution(x)
}}}
$$
{{{
normaldistribution(x)=exp(-(x-1)**2/(2*(0.6)**2))/(sqrt(2*pi)*0.6)
rx=3*0.6
plot [1-rx:1+rx] normaldistribution(x)
}}}
=== test E
===
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A+B=B+A
=== test ===
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=== test2 ===
3*0.6
$$\displaystyle
\frac{32}{64}
=\frac{2\times4\times4}{4\times4\times4}
=\frac{\cancelto{1
-rx:1+rx] normaldistribution(x)
}{2}\times\cancel{4}\times\cancel{4}}{\cancelto{2}{4}\times\cancel{4}\times\cancel{4}}
=\frac12 $$
}}}
----
-- [Karnes] [[DateTime(2005-12-28T15:14:44)]]
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----
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[ÆíÁý]
¿¬½ÀÀå ¶
Wave equation is
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[ÆíÁý]
Normal Distribution. mean=1, std=0.6 ¶
$$
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normaldistribution(x)=exp(-(x-1)**2/(2*(0.6)**2))/(sqrt(2*pi)*0.6) rx=3*0.6 plot [1-rx:1+rx] normaldistribution(x)