Listed below are the numbers of cricket chirps in 1 minute and the corresponding temperatures in °F. Find the regression equation, letting chirps in 1 minute be the independent (x) variable. Find the best predicted temperature at a time when a cricket chirps 3000 times in 1 minute, using the regression equation. What is wrong with this predicted temperature? Chirps in 1 min Temperature (°F) 792 1056 991 1177 1097 939 823 905 67.2 86.6 83.5 93.6 89.5 73.5 72.5 70.7 The regression equation is y=+x. (Round the y-intercept to one decimal place as needed. Round the slope to four decimal places as needed.)

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Listed below are the numbers of cricket chirps in 1 minute and the corresponding temperatures in °F. Find the regression equation, letting chirps in 1 minute be the independent (x) variable. Find the
best predicted temperature at a time when a cricket chirps 3000 times in 1 minute, using the regression equation. What is wrong with this predicted temperature?
Chirps in 1 min
Temperature (°F)
792
67.2
1056 991 1177 1097 939 823 905
86.6 83.5 93.6 89.5 73.5 72.5 70.7
...
The regression equation is y=+x.
(Round the y-intercept to one decimal place as needed. Round the slope to four decimal places as needed.)
X.
Transcribed Image Text:Listed below are the numbers of cricket chirps in 1 minute and the corresponding temperatures in °F. Find the regression equation, letting chirps in 1 minute be the independent (x) variable. Find the best predicted temperature at a time when a cricket chirps 3000 times in 1 minute, using the regression equation. What is wrong with this predicted temperature? Chirps in 1 min Temperature (°F) 792 67.2 1056 991 1177 1097 939 823 905 86.6 83.5 93.6 89.5 73.5 72.5 70.7 ... The regression equation is y=+x. (Round the y-intercept to one decimal place as needed. Round the slope to four decimal places as needed.) X.
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