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10. The data show the bug chirps per minute at different temperatures. Find the regression equation, letting the first variable be the independent (x) variable.

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10. The data show the bug chirps per minute at different temperatures. Find the regression equation, letting the first variable be the independent (x) variable. Find the best predicted temperature for a time when a bug is chirping at the rate of 3000 chirps per minute. Use a significance level of 0.05. What is wrong with this predicted value? Chirps in 1 min 1164 1070 773 815 756 1117 Temperature ( F) 89.9 84.8 65.2 74.1 66.5 8 What is the regression equation? y= Round the x-coefficient to four decimal places as needed. Round the constant to two decimal places as needed.) What is the best predicted temperature for a time when a bug is chirping at the rate of 3000 chirps per minute? The best predicted temperature when a bug is chirping at 3000 chirps per minute is (Round to one decimal place as needed.) What is wrong with this predicted value? Choose the correct answer below. O A. It is only an approximation. An unrounded value would be considered accurate. O B. It is unrealistically high. The value 3000 is far outside of the range of observed values. C. The first variable should have been the dependent variable O D. Nothing is wrong with this value. It can be treated as an accurate prediction

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