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Mar
22
awarded  Popular Question
Jan
5
awarded  Popular Question
Oct
9
awarded  Notable Question
Sep
12
awarded  Yearling
Jun
13
accepted Finding the cumulative distribution function of the minimum of a sample
Jun
13
revised Finding the cumulative distribution function of the minimum of a sample
edited body
Jun
13
comment Finding the cumulative distribution function of the minimum of a sample
How would I find the pdf of the minimum of the sample?
Jun
13
revised Finding the cumulative distribution function of the minimum of a sample
added 1 characters in body
Jun
13
asked Finding the cumulative distribution function of the minimum of a sample
Apr
16
awarded  Popular Question
Dec
24
accepted Probability at least one person receives exactly two aces out of five cards
Dec
24
revised Probability at least one person receives exactly two aces out of five cards
added 27 characters in body
Dec
24
asked Probability at least one person receives exactly two aces out of five cards
Dec
24
accepted Probability each of six different numbers will appear at least once?
Dec
24
comment Probability each of six different numbers will appear at least once?
What is wrong with assigning the seven slots $7!$ ways and multiplying it by 6 to represent a number that can be 6 different values?
Dec
24
asked Probability each of six different numbers will appear at least once?
Dec
23
accepted Determine the probability the number $j$ will appear $n_j$ times when $n$ dice are rolled
Dec
23
comment Determine the probability the number $j$ will appear $n_j$ times when $n$ dice are rolled
The denominator is the total combinations of creating $n$ subsets with replacement.
Dec
23
comment Determine the probability the number $j$ will appear $n_j$ times when $n$ dice are rolled
Thank you. What is the first solution incorrectly assuming?
Dec
23
comment Determine the probability the number $j$ will appear $n_j$ times when $n$ dice are rolled
No, this is incorrect. I am looking for the probability each $j$ appears exactly $n_j$ times. Your solution represents for one $j$.