Formulas

From Socr

(Difference between revisions)
Jump to: navigation, search
Line 60: Line 60:
* [http://en.wikipedia.org/wiki/Discrete_Weibull_distribution Discrete_Weibull]: <math> f(x; p, \beta) = (1-p)^{x^\beta}-(1-p)^{(x+1)^\beta}. (x=\{0,1,...\}) \!</math>
* [http://en.wikipedia.org/wiki/Discrete_Weibull_distribution Discrete_Weibull]: <math> f(x; p, \beta) = (1-p)^{x^\beta}-(1-p)^{(x+1)^\beta}. (x=\{0,1,...\}) \!</math>
* [http://socr.ucla.edu/htmls/dist/LogGamma.html Log Gamma]: <math> f(x)=[1/ \alpha^\beta \Gamma(\beta)]e^{\beta x}e^{-e^x/a}. (-\infty<x<\infty) \!</math>
* [http://socr.ucla.edu/htmls/dist/LogGamma.html Log Gamma]: <math> f(x)=[1/ \alpha^\beta \Gamma(\beta)]e^{\beta x}e^{-e^x/a}. (-\infty<x<\infty) \!</math>
-
* [http://socr.ucla.edu/htmls/dist/GeneralizedGamma.html Generalized Gamma]: <math> f(x)=\frac{\gamma}{\alpha^{\gamma \beta \Gamma(\beta)}}x^{\gamma \beta-1)e^{-(x/\alpha)^\gamma}. (x>0) \!</math>
+
* [http://socr.ucla.edu/htmls/dist/GeneralizedGamma.html Generalized Gamma]: <math> f(x)=\frac{\gamma}{\alpha^{\gamma \beta \Gamma(\beta)}}x^{\gamma \beta-1)}e^{-(x/\alpha)^\gamma}. (x>0) \!</math>
==Transformations==
==Transformations==

Revision as of 19:56, 22 April 2010

Probability Density Functions (PDFs)

Transformations




Translate this page:

(default)

Deutsch

Español

Français

Italiano

Português

日本語

България

الامارات العربية المتحدة

Suomi

इस भाषा में

Norge

한국어

中文

繁体中文

Русский

Nederlands

Ελληνικά

Hrvatska

Česká republika

Danmark

Polska

România

Sverige

Personal tools