
Concept explainers
(a)
To test: The verification of
(a)

Answer to Problem 11CR
Solution: It is verified that,
Explanation of Solution
Calculation: Let x represent the batting average of a professional baseball player and y represent the home run percentage.
We have,
We have to calculate first
Conclusion: Hence, it is verified that,
(b)
To test: The verification of
(b)

Answer to Problem 11CR
Solution: It is verified that
Explanation of Solution
Calculation:
The
Using the level of significance,
The null hypothesis for testing is defined as,
The alternative hypothesis is defined as,
The sample test statistic is,
The degrees of freedom are
The above test is right tailed test, so we can use the one-tail area in the student’s distribution table (Table 4 of the Appendix). From table, the p-value for the sample test statistic
Conclusion: It is verified that
(c)
To test: The verification of
(c)

Answer to Problem 11CR
Solution: It is verified that,
Explanation of Solution
Calculation:
The value b is calculated as follows:
Using the level of significance,
The null hypothesis for testing is defined as,
The alternative hypothesis is defined as,
The find t statistic and P-value using MINITAB software is as:
Step 1: Enter x and y in Minitab worksheet.
Step 2: Go to Stat > Regression > Regression > Fit Regression Model.
Step 2: Select ‘y’ in Response and ‘x’ in ‘Continuous predictors’ box. Then click on OK.
The sample test statistic is
The software gives the P-value for two-tailed test, for finding the p-value for one tailed test we can divide the obtained P-value by 2.
Since P-value is less than 0.01, hence we can reject the null hypothesis at
Conclusion: Hence, it is verified that,
(d)
To test: The verification of
(d)

Answer to Problem 11CR
Solution: It is verified that,
Explanation of Solution
Calculation: The results obtained in above part are
The regression line equation is
The find 90% confidence interval for
Step 1: Go to Stat > Regression > Regression > Predict.
Step 2: Select ‘y’ in Response and write 0.310 in ‘x’ box.
Step 3: Click on Options write 90 in ‘Confidence level’ and select ‘Two-sided’ in Type of interval. Then click on OK.
The 90% confidence interval is obtained as:
Conclusion: Hence, it is verified that,
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Chapter 11 Solutions
Student Solutions Manual for Brase/Brase's Understanding Basic Statistics, 7th
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- 1. Differentiate between discrete and continuous random variables, providing examples for each type. 2. Consider a discrete random variable representing the number of patients visiting a clinic each day. The probabilities for the number of visits are as follows: 0 visits: P(0) = 0.2 1 visit: P(1) = 0.3 2 visits: P(2) = 0.5 Using this information, calculate the expected value (mean) of the number of patient visits per day. Show all your workings clearly. Rubric to follow Definition of Random variables ( clearly and accurately differentiate between discrete and continuous random variables with appropriate examples for each) Identification of discrete random variable (correctly identifies "number of patient visits" as a discrete random variable and explains reasoning clearly.) Calculation of probabilities (uses the probabilities correctly in the calculation, showing all steps clearly and logically) Expected value calculation (calculate the expected value (mean)…arrow_forwardif the b coloumn of a z table disappeared what would be used to determine b column probabilitiesarrow_forwardConstruct a model of population flow between metropolitan and nonmetropolitan areas of a given country, given that their respective populations in 2015 were 263 million and 45 million. The probabilities are given by the following matrix. (from) (to) metro nonmetro 0.99 0.02 metro 0.01 0.98 nonmetro Predict the population distributions of metropolitan and nonmetropolitan areas for the years 2016 through 2020 (in millions, to four decimal places). (Let x, through x5 represent the years 2016 through 2020, respectively.) x₁ = x2 X3 261.27 46.73 11 259.59 48.41 11 257.96 50.04 11 256.39 51.61 11 tarrow_forward
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