Measurable function: Difference between revisions

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imported>Hendra I. Nurdin
(Stub for measurable function)
 
imported>Hendra I. Nurdin
m (typo: measure space-->measurable space)
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In [[mathematics]], a [[function]] ''f'' that maps every element of a [[measure space]] <math>(X,\mathcal{F}_X)</math> to an element of another measure space <math>(Y,\mathcal{F}_Y)</math> is said to be '''measurable''' (with respect to the [[sigma algebra]] <math>\mathcal{F}_X</math>) if for any set <math>A \in \mathcal{F}_Y</math> it holds that <math>f^{-1}(A) \in \mathcal{F}_X</math>, where <math>f^{-1}(A)=\{x \in X \mid f(x) \in A\}</math>.
In [[mathematics]], a [[function]] ''f'' that maps every element of a [[measurable space]] <math>(X,\mathcal{F}_X)</math> to an element of another measure space <math>(Y,\mathcal{F}_Y)</math> is said to be '''measurable''' (with respect to the [[sigma algebra]] <math>\mathcal{F}_X</math>) if for any set <math>A \in \mathcal{F}_Y</math> it holds that <math>f^{-1}(A) \in \mathcal{F}_X</math>, where <math>f^{-1}(A)=\{x \in X \mid f(x) \in A\}</math>.


[[Category:Mathematics_Workgroup]]
[[Category:Mathematics_Workgroup]]
[[Category:CZ Live]]
[[Category:CZ Live]]

Revision as of 07:19, 21 September 2007

In mathematics, a function f that maps every element of a measurable space to an element of another measure space is said to be measurable (with respect to the sigma algebra ) if for any set it holds that , where .