Question: below. Click here to view the data table. Click here to view the table of critical values of the correlation coefficient. (a) Draw a scatter

 below. Click here to view the data table. Click here to

below. Click here to view the data table. Click here to view the table of critical values of the correlation coefficient. (a) Draw a scatter diagram of the data treating distance from the star as the explanatory variable. Choose the correct graph below. A. O B. O C. D. 250- Q 250 Q 4000- 250 Q Distance (MM mi) 125 Sidereal Yea 125- 2000- 125- Sidereal Y Sidereal Y 2000 4000 2000 4000 125 250 0 2000 4000 Distance (MM mi) Distance (MM mi) Sidereal Year Distance (MM mi) (b) Determine the correlation between distance and sidereal year. The correlation between distance and sidereal year is. Round to three decimal places as needed.) Does this imply a linear relation between distance and sidereal year? Yes O No (c) Compute the least-squares regression line. Round the slope to three decimal places as needed. Round the intercept to one decimal place as needed.) d) Plot the residuals against the distance from the star. Choose the correct graph below. O A. O B. O C. OD. Q Residual 500- Q Q Residual Residual Residua 25 254 0 2000 4000 2000 4000 2000 4000 2000 4000 Distance (MM mi) Distance (MM mi) Distance (MM mi) Distance (MM mi) (e) Do you think the least-squares regression line is a good model? Why? O A. Yes, because the residuals do not X Planet Data O B. Yes, because the scatterplot appe O C. No, because the residuals do not O D. No, because the residuals form a O E. Yes, because the residuals form a Planet Distance from the Star, x (millions of miles) Sidereal Year, y Planet 1 36 0.22 Planet 2 67 0.64 Planet 3 93 1.00 Planet 4 142 1.88 Planet 5 483 11.8 Planet 6 887 29.5 Planet 1,785 84.0 Planet 8 2,797 163.0 Planet 9 3,675 248. Print Done

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