The volume (in cubic feet) of a black cherry tree can be modeled by the equation y = - 50.8 + 0.3x, + 5.1x2, where x, is the tree's height (in feet) and x, is the tree's liameter (in inches). Use the multiple regression equation to predict the y-values for the values of the independent variables. a) x, = 71, x2 = 8.6 b) x, = 66, x, = 11.9 c) x, = 84, x2 = 17.7 d) x, = 92, x2 = 20.3 a) The predicted volume is cubic feet. Round to one decimal place as needed.)

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The volume​ (in cubic​ feet) of a black cherry tree can be modeled by the equation y=−50.8+0.3x1+5.1x2​, where x1 is the​ tree's height​ (in feet) and x2 is the​ tree's diameter​ (in inches). Use the multiple regression equation to predict the​ y-values for the values of the independent variables.

The volume (in cubic feet) of a black cherry tree can be modeled by the equation y = - 50.8 +0.3x, + 5.1x2, where x, is the tree's height (in feet) and x, is the tree's
diameter (in inches). Use the multiple regression equation to predict the y-values for the values of the independent variables.
(a) x, = 71, x2 = 8.6
(b) x1 = 66, x2 = 11.9
(c) X, = 84, x2 = 17.7
(d) x1 = 92, x2 = 20.3
%3D
(a) The predicted volume is
cubic feet.
(Round to one decimal place as needed.)
Transcribed Image Text:The volume (in cubic feet) of a black cherry tree can be modeled by the equation y = - 50.8 +0.3x, + 5.1x2, where x, is the tree's height (in feet) and x, is the tree's diameter (in inches). Use the multiple regression equation to predict the y-values for the values of the independent variables. (a) x, = 71, x2 = 8.6 (b) x1 = 66, x2 = 11.9 (c) X, = 84, x2 = 17.7 (d) x1 = 92, x2 = 20.3 %3D (a) The predicted volume is cubic feet. (Round to one decimal place as needed.)
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