Formulas

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(Probability Density Functions (PDFs))
(Probability Density Functions (PDFs))
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* [http://socr.ucla.edu/htmls/dist/InvertedBeta.html Inverted Beta]: <math> f(x)=\frac{x^{\beta-1}(1+x)^{-\beta-\gamma}}{B(\beta,\gamma)}. (x>0, \beta>1, \gamma>1) \!</math>
* [http://socr.ucla.edu/htmls/dist/InvertedBeta.html Inverted Beta]: <math> f(x)=\frac{x^{\beta-1}(1+x)^{-\beta-\gamma}}{B(\beta,\gamma)}. (x>0, \beta>1, \gamma>1) \!</math>
* [http://socr.ucla.edu/htmls/dist/Arctangent.html Arctangent]: <math> f(x; \lambda, \phi)= \frac{\lambda}{[arctan(\lambda \phi)+\pi/2][1+\lambda^2 (x - \phi)^2]} (x \geq 0, -\infty < \lambda < \infty) \!</math>
* [http://socr.ucla.edu/htmls/dist/Arctangent.html Arctangent]: <math> f(x; \lambda, \phi)= \frac{\lambda}{[arctan(\lambda \phi)+\pi/2][1+\lambda^2 (x - \phi)^2]} (x \geq 0, -\infty < \lambda < \infty) \!</math>
-
* [http://socr.ucla.edu/htmls/dist/Makeham.html Makeham]: <math> f(x) = (\gamma + \delta\kapa^x)exp(-\gamma x-\frac{\delta
+
* [http://socr.ucla.edu/htmls/dist/Makeham.html Makeham]: <math> f(x) = (\gamma + \delta\kappa^x)exp(-\gamma x-\frac{\delta
-
(\kapa^x-1)}{log(\kapa)}). x>0 \!</math>
+
(\kappa^x-1)}{log(\kappa)}). x>0 \!</math>
* [http://socr.ucla.edu/htmls/dist/Hypoexponential.html Hypoexponential]: <math>  \!</math>
* [http://socr.ucla.edu/htmls/dist/Hypoexponential.html Hypoexponential]: <math>  \!</math>
* [http://socr.ucla.edu/htmls/dist/Doubly-noncentral-t.html Doubly Noncentral t]: <math>  \!</math>
* [http://socr.ucla.edu/htmls/dist/Doubly-noncentral-t.html Doubly Noncentral t]: <math>  \!</math>

Revision as of 03:40, 25 April 2010

Probability Density Functions (PDFs)

Transformations




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