• The K-means algorithm also introduces a set of binary variables to represent assignment of data points to specific clusters: <br /> This set of binary variables is interpreted as follows: if data point <math>n</math> is assigned to clus
    8 KB (1,350 words) - 10:57, 22 January 2015
  • [[Category:random variables]] Question 1: Probability and Random Processes
    3 KB (470 words) - 07:47, 4 November 2014
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  • [[Category:random variables]] Question 1: Probability and Random Processes
    3 KB (548 words) - 07:33, 20 November 2014
  • [[Category:random variables]] Question 1: Probability and Random Processes
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    2 KB (366 words) - 01:36, 10 March 2015
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    4 KB (571 words) - 10:24, 10 March 2015
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    4 KB (692 words) - 10:36, 10 March 2015
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    3 KB (490 words) - 10:36, 10 March 2015
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    5 KB (939 words) - 10:37, 10 March 2015
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  • [[Category:random variables]] Question 1: Probability and Random Processes
    5 KB (882 words) - 01:54, 31 March 2015
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    8 KB (1,336 words) - 01:53, 31 March 2015
  • [[Category:random variables]] Question 1: Probability and Random Processes
    2 KB (351 words) - 00:17, 4 December 2015
  • [[Category:random variables]] Question 1: Probability and Random Processes
    4 KB (851 words) - 23:04, 31 January 2016
  • For this problem, it is very useful to note that for any independent random variables <math>X</math> and <math>Y</math> and their characteristic functions <math> We then note that the characteristic function of an exponential random variable <math>Z</math> is written as
    2 KB (243 words) - 22:00, 7 March 2016
  • [[Category:random variables]] Question 1: Probability and Random Processes
    3 KB (502 words) - 15:33, 19 February 2019

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