KTUGFaq

KTUG FAQ

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µ¥ÀÌÁöÀ¥ (12/11/04)

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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)


I am sorry that I cannot write Hangul at home. Thanks for your concern, and I would like to contribute to this faq. -- from daisyweb.


À§¿¡¼­ºÎÅÍ ÆíÁýÇÏ¸é µÇÁÒ.^^ ¹Ý°©½À´Ï´Ù. µ¥ÀÌÁöÀ¥ ´Ô. Àß Áö³»½ÃÁÒ? --- Karnes


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Normal Distribution. mean=1, std=0.6

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)
}}

test E
{{{#!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)

\sqrt[2]{20} \\Sigma\frac{2}{4}


\begin{figure}[p] \begin{minipage}{\textwidth} \begin{center} \includegraphics{../figure/ch1/organic_devices} \captionVarious Organic Devices{Various Organic Devices (a) flexible memory device developed by Professor Yang Yang in UCLA, (b) flexible OLED\footnote {http://www.hardwareoc.hu/index.php/p/articles/cid/5/y/118/z/3.html}, (c) solar cell\footnote{Credit: Nicole Cappello and the Georgia Institute of Technology}, (d) Perspective of OLED Market\footnote{Display Search Korea} } \label{fig:organic_devices} \end{center} \end{minipage}\\ \end{figure}