A random sample of 40 quarters minted after 1964 are weighed. The
- a. What is the null hypothesis?
- b. What is the alternative hypothesis?
- c. What is the value of the standard score for the sample mean of 5.639 grams?
- d. What is the P-value?
- e. What do you conclude? (Be sure to address the original claim that the mean weight is 5.670 grams.)
- f. Describe a type I error for this test.
- g. Describe a type II error for this test.
a.
Identify the null hypothesis.
Explanation of Solution
The given information is that the mean weight for a sample of 40 quarters is 5.639 grams and the standard deviation is 0.062 gram.
Here, the claim is that the population of quarters has a mean weight of 5.670 grams. This can be written as
Therefore, the null hypothesis is
b.
Identify the alternative hypothesis.
Explanation of Solution
Here, the claim is that the population of quarters has a mean weight of 5.670 grams. This can be written as
Therefore, the alternative hypothesis is
c.
Find the value of the standard score for the sample mean of 5.639 grams.
Answer to Problem 1CRE
The value of the standard score for the sample mean of 5.639 grams is –3.16.
Explanation of Solution
Calculation:
Assume that
The formula for standard score is,
Substitute
Thus, the value of the standard score is –3.16.
d.
Find the P-value.
Answer to Problem 1CRE
The P-value is 0.001578.
Explanation of Solution
Calculation:
P-value:
Software procedure:
Step-by-step software procedure to obtain P-value using EXCEL is as follows:
- Open an EXCEL file.
- In cell A1, enter the formula “=NORM.S.DIST(–3.16,1)”.
- Output using Excel software is given below:
From the output, the P-value for two tailed test is
e.
State the conclusion.
Answer to Problem 1CRE
There is enough evidence to reject the claim that the population of quarters has a mean weight of 5.670 grams.
Explanation of Solution
Decision rule:
If
Conclusion:
Here, the P-value is less than the level of significance.
That is,
Therefore, the null hypothesis is rejected.
Hence, there is enough evidence to reject the claim that the population of quarters has a mean weight of 5.670 grams.
f.
Describe a type I error.
Explanation of Solution
Type I error: Reject the null hypothesis, when it is actually true.
A Type I error occurs when the hypotheses test indicates that the mean weight differs from 5.670 grams. However, in reality, the mean weight is 5.670 grams.
g.
Describe a type II error.
Explanation of Solution
Type II error: Fail to reject the null hypothesis, when it is false.
A Type II error occurs when the hypotheses test indicates that the mean weight is 5.670 grams. However, in reality, the mean weight differs from 5.670 grams.
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Chapter 9 Solutions
Statistical Reasoning for Everyday Life Plus MyLab Statistics with Pearson eText -- 18 Week Access Card Package (5th Edition)
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