Formulas

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(Probability Density Functions (PDFs))
(Probability Density Functions (PDFs))
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* [http://socr.ucla.edu/htmls/dist/Weibull.html Weibull]: <math> f(x)=(\beta/\alpha)x^{\beta-1}exp[-(1/\alpha)x^\beta]. x>0  \!</math>
* [http://socr.ucla.edu/htmls/dist/Weibull.html Weibull]: <math> f(x)=(\beta/\alpha)x^{\beta-1}exp[-(1/\alpha)x^\beta]. x>0  \!</math>
* [http://socr.ucla.edu/htmls/dist/Log-logistic.html Log-logistic]: <math> f(x)=\frac{\lambda k(\lambda k)^{k-1}}{[1+(\lambda x)^k]^2}. x>0 \!</math>
* [http://socr.ucla.edu/htmls/dist/Log-logistic.html Log-logistic]: <math> f(x)=\frac{\lambda k(\lambda k)^{k-1}}{[1+(\lambda x)^k]^2}. x>0 \!</math>
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* [http://socr.ucla.edu/htmls/dist/TSP.html TSP]: <math>  \!</math>
+
* [http://socr.ucla.edu/htmls/dist/TSP.html TSP]: <math> f(x) = \begin{cases} \frac{n}{b-a}(\frac{x-a}{m-a})^{n-1}, a<x\le m \\
 +
  \frac{n}{b-a}(\frac{b-x}{b-a})^{n-1}, m\le x<b \end{cases} \!</math>
* [http://socr.ucla.edu/htmls/dist/Extreme-value.html Extreme value]: <math>  \!</math>
* [http://socr.ucla.edu/htmls/dist/Extreme-value.html Extreme value]: <math>  \!</math>
* [http://socr.ucla.edu/htmls/dist/Lomax.html Lomax]: <math>  \!</math>
* [http://socr.ucla.edu/htmls/dist/Lomax.html Lomax]: <math>  \!</math>

Revision as of 04:53, 27 April 2010

Probability Density Functions (PDFs)

Transformations




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