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*Peter: as far as your question about the Lebesgue Dom. Conv. Thm generalization, you can do it with convergence in measure, see Royden, problem 21 of Chapter 4.
 
*Peter: as far as your question about the Lebesgue Dom. Conv. Thm generalization, you can do it with convergence in measure, see Royden, problem 21 of Chapter 4.
 
-Coach
 
-Coach
 
[[8.5_OldKiwi|#2 Solution]]
 
  
 
[[8.5_OldKiwi|#5 Solution]]
 
[[8.5_OldKiwi|#5 Solution]]
  
 
[[8.7_OldKiwi|#7 Solution]]
 
[[8.7_OldKiwi|#7 Solution]]

Revision as of 08:48, 16 July 2008

Click here for problem set 8


Questions from class:

  • Ben Ward: Royden Chapter 5, sect. 4, Corollary 15 gives f is absolutely continuous iff its the indef. integral of its derivative.
  • Peter: as far as your question about the Lebesgue Dom. Conv. Thm generalization, you can do it with convergence in measure, see Royden, problem 21 of Chapter 4.

-Coach

#5 Solution

#7 Solution

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Recent Math PhD now doing a post-doctorate at UC Riverside.

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