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Difference between revisions of "Talk:Convergence of measures"

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(Created page with "Texxed. Introduced the notion of total variation measure to simplify notation and definitions. Corrected a mistake in the definition of total variation (the original one work...")
 
(suggestions)
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should be taught: I am not one of them and open to a friendly debate with
 
should be taught: I am not one of them and open to a friendly debate with
 
fellows probabilists :-). [[User:Camillo.delellis|Camillo]] 13:49, 21 July 2012 (CEST)
 
fellows probabilists :-). [[User:Camillo.delellis|Camillo]] 13:49, 21 July 2012 (CEST)
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Hi Camillo -- a couple of suggestions: 
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* Should  $\mu: \mathcal{B}\mapsto \mathbb R$ actually be  $\mu: \mathcal{B}\rightarrow \mathbb R$?
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* Perhaps replace $\mathcal{B}$ by $\mathscr{B}$?
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--[[User:Jjg|Jjg]] 14:35, 21 July 2012 (CEST)

Revision as of 14:35, 21 July 2012

Texxed. Introduced the notion of total variation measure to simplify notation and definitions. Corrected a mistake in the definition of total variation (the original one worked only for real-valued measures). Added the Riesz representation theorem and connection to Banach space theory. Precised some terminology. I have a real analysis background in measure theory: I kept the original terminology, but also added the one which is more common in real analysis. Some real analysts love to quarrel with probabilists about terminology and how measure theory should be taught: I am not one of them and open to a friendly debate with fellows probabilists :-). Camillo 13:49, 21 July 2012 (CEST)

Hi Camillo -- a couple of suggestions:

  • Should $\mu: \mathcal{B}\mapsto \mathbb R$ actually be $\mu: \mathcal{B}\rightarrow \mathbb R$?
  • Perhaps replace $\mathcal{B}$ by $\mathscr{B}$?

--Jjg 14:35, 21 July 2012 (CEST)

How to Cite This Entry:
Convergence of measures. Encyclopedia of Mathematics. URL: http://www.encyclopediaofmath.org/index.php?title=Convergence_of_measures&oldid=27132