4. Computing probability from a frequency distribution A bucket contains N = 11 tickets with different scores. Let X be the outcome of a random draw from this bucket. The graph below shows the frequency distribution histogram for these scores. FREQUENCY 5 이 ㅏ X Value p(X) 1 The table below shows the probability distribution for X. 1 2 3 4 3/11 2/11 1/11 2/11 5 3/11 5 Suppose you take a random sample of one score from this bucket. The probability that this score shows a 3 is p(x = 3) = probability that this score shows a number less than 3 is p(x < 3) = p(X > 3) = The . The probability that this score shows a number greater than 3 is

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4. Computing probability from a frequency distribution
A bucket contains N = 11 tickets with different scores. Let X be the outcome of a random draw from this bucket. The graph below shows the
frequency distribution histogram for these scores.
FREQUENCY
5
1
0
1
X Value
p(x)
2
3
The table below shows the probability distribution for X.
1
3
4
2
3/11 2/11 1/11 2/11
5
3/11
5
?
Suppose you take a random sample of one score from this bucket. The probability that this score shows a 3 is p(x = 3) =
probability that this score shows a number less than 3 is p(X < 3) =
p(x > 3) =
The
. The probability that this score shows a number greater than 3 is
Transcribed Image Text:4. Computing probability from a frequency distribution A bucket contains N = 11 tickets with different scores. Let X be the outcome of a random draw from this bucket. The graph below shows the frequency distribution histogram for these scores. FREQUENCY 5 1 0 1 X Value p(x) 2 3 The table below shows the probability distribution for X. 1 3 4 2 3/11 2/11 1/11 2/11 5 3/11 5 ? Suppose you take a random sample of one score from this bucket. The probability that this score shows a 3 is p(x = 3) = probability that this score shows a number less than 3 is p(X < 3) = p(x > 3) = The . The probability that this score shows a number greater than 3 is
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