dard deviation of 28 cubic litres. What is the probability that a random sample of 4 will have a sample mean within 5 cubic litres of an average Canadian? (a) Verify that the assumptions for this computation are met. 1. Independence Assumption, checked by the Randomization Condition: 2. Sample Size Assumption, checked by the Large Enough Condition:

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Question a,b,c

Suppose that the average daily water consumption of all Canadians is 72 cubic litres with a stan-
dard deviation of 28 cubic litres. What is the probability that a random sample of 49 Canadians
will have a sample mean within 5 cubic litres of an average Canadian?
(a) Verify that the assumptions for this computation are met.
1. Independence Assumption, checked by the Randomization Condition:
2. Sample Size Assumption, checked by the Large Enough Condition:
(b) What are the centre and spread of the appropriate Normal distribution.
E(x) =
%D
SD(x) =
(c) Compute the z-score(s) for this probability.
(d) Draw a rough normal diagram for this test statistic and compute the probability.
(e) Write a sentence interpreting this probability.
Transcribed Image Text:Suppose that the average daily water consumption of all Canadians is 72 cubic litres with a stan- dard deviation of 28 cubic litres. What is the probability that a random sample of 49 Canadians will have a sample mean within 5 cubic litres of an average Canadian? (a) Verify that the assumptions for this computation are met. 1. Independence Assumption, checked by the Randomization Condition: 2. Sample Size Assumption, checked by the Large Enough Condition: (b) What are the centre and spread of the appropriate Normal distribution. E(x) = %D SD(x) = (c) Compute the z-score(s) for this probability. (d) Draw a rough normal diagram for this test statistic and compute the probability. (e) Write a sentence interpreting this probability.
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