The following table gives the data for the average temperature and the snow accumulation in several small towns for a single month. Determine the equation of the regression line, y = bo + b₁x. Round the slope and y-intercept to the nearest thousandth. Then determine if the regression equation is appropriate for making predictions at the 0.01 level of significance. Critical Values of the Pearson Correlation Coefficient Average Temperatures and Snow Accumulations 32 22 44 Average Temperature (°F) 44 43 Snow Accumulation (in.) 8 18 29 9 7 43 25 35 16 30 10 26 26 19 16

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The following table gives the data for the average temperature and the snow accumulation in several small towns for a single month. Determine the equation of the
regression line, y = bo + b₁x. Round the slope and y-intercept to the nearest thousandth. Then determine if the regression equation is appropriate for making
predictions at the 0.01 level of significance.
Critical Values of the Pearson Correlation Coefficient
Average Temperatures and Snow Accumulations
32 22 44
Average Temperature (°F) 44
16
30 43
43 25 35
10 26 26
Snow Accumulation (in.) 8 18 29 9
19 16 7
Transcribed Image Text:The following table gives the data for the average temperature and the snow accumulation in several small towns for a single month. Determine the equation of the regression line, y = bo + b₁x. Round the slope and y-intercept to the nearest thousandth. Then determine if the regression equation is appropriate for making predictions at the 0.01 level of significance. Critical Values of the Pearson Correlation Coefficient Average Temperatures and Snow Accumulations 32 22 44 Average Temperature (°F) 44 16 30 43 43 25 35 10 26 26 Snow Accumulation (in.) 8 18 29 9 19 16 7
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