(a) If a random sample of size n = 33 is drawn, find ?x, ? x and P(14 ≤ x ≤ 16). (Round ?x to two decimal places and the probability to four decimal places.) ?x =  ? x =  P(14 ≤ x ≤ 16) =  (b) If a random sample of size n = 65 is drawn, find ?x, ? x and P(14 ≤ x ≤ 16). (Round ? x to two decimal places and the probability to four decimal places.) ?x =  ? x =  P(14 ≤ x ≤ 16) =  (c) Why should you expect the probability of part (b) to be higher than that of part (a)? (Hint: Consider the standard deviations in parts (a) and (b).) The standard deviation of part (b) is      part (a) because of the      sample size. Therefore, the distribution about ?x is      .

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Suppose x has a distribution with ? = 14 and ? = 7.

 
(a) If a random sample of size n = 33 is drawn, find ?x, ? x and P(14 ≤ x ≤ 16). (Round ?x to two decimal places and the probability to four decimal places.)
?x = 
? x = 
P(14 ≤ x ≤ 16) = 

(b) If a random sample of size n = 65 is drawn, find ?x, ? x and P(14 ≤ x ≤ 16). (Round ? x to two decimal places and the probability to four decimal places.)
?x = 
? x = 
P(14 ≤ x ≤ 16) = 

(c) Why should you expect the probability of part (b) to be higher than that of part (a)? (Hint: Consider the standard deviations in parts (a) and (b).)
The standard deviation of part (b) is      part (a) because of the      sample size. Therefore, the distribution about ?x is      .
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