The data given in the following table shows equivalent temperatures on the Celsius temperature scale and the Fahrenheit temperature scale. (A graphing calculator is recommended. Round your answers to two decimal places.) Celsius (x°) −40      0    100 Fahrenheit (y°) −40    32    212 (a) Find the linear correlation coefficient for the data. (b) What is the significance of the value found in part (a)? The value in part (a) is insignificant.The value in part (a) is a perpendicular line.    The data displays a perfect linear relationship.The data displays a quadratic relationship.The correlation obtained by the data is not linear. (c) Find the equation of the least-squares regression line. ŷ =        (d) Use the equation of the least-squares line from part (c) to predict the Fahrenheit temperature that corresponds to a Celsius temperature of 15°.  °F (e) Is the procedure in part (d) an example of interpolation or extrapolation? interpolationextrapolation

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The data given in the following table shows equivalent temperatures on the Celsius temperature scale and the Fahrenheit temperature scale. (A graphing calculator is recommended. Round your answers to two decimal places.)

Celsius (x°) −40      0    100
Fahrenheit (y°) −40    32    212
(a) Find the linear correlation coefficient for the data.


(b) What is the significance of the value found in part (a)?
The value in part (a) is insignificant.The value in part (a) is a perpendicular line.    The data displays a perfect linear relationship.The data displays a quadratic relationship.The correlation obtained by the data is not linear.


(c) Find the equation of the least-squares regression line.
ŷ = 
 
 
 


(d) Use the equation of the least-squares line from part (c) to predict the Fahrenheit temperature that corresponds to a Celsius temperature of 15°.
 °F

(e) Is the procedure in part (d) an example of interpolation or extrapolation?
interpolationextrapolation    
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