Distribution | Fonction de distribution de probabilités | Entropie |
Loi uniforme continue | ![{\displaystyle f(x)={\frac {1}{b-a}}1\!\!1_{[a,b]}}](https://img.franco.wiki/i/792f886da1565070453ea160b627f8e0bf3b86e0.svg) |  |
Loi normale |  |  |
Loi exponentielle |  |  |
Loi de Cauchy |  |  |
Loi du χ² |  |

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Distribution Gamma |  |  |
Loi logistique |  |  |
Statistique de Maxwell-Boltzmann |  |  |
Distribution de Pareto |  |  |
Loi de Student |  |  |
Distribution de Weibull |  |  |
Loi normale multidimensionnelle |  | ![{\displaystyle {\frac {1}{2}}\ln \left[(2\pi {\rm {e}})^{N}|\Sigma |\right]}](https://img.franco.wiki/i/be6ad50708fe09866888447f7a4abc7475f8d10e.svg) |