Listed below are the heights (cm) of winning presidential candidates and their main opponents from several recent presidential elections. Find the regression equation, letting president be the predictor (x) variable. Find the best predicted height of an opponent given that the president had a height of 188 cm. How close is the result to the actual opponent height of 175 cm? Question Viewer 183 175 188 177 192 188 178 183 191 Opponent 182 173 175 183 180 173 180 185 169 The regression equation is y=+ (x (Round the y-intercept to the nearest integer as needed. Round the slope to three decimal places as needed.)

Glencoe Algebra 1, Student Edition, 9780079039897, 0079039898, 2018
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ISBN:9780079039897
Author:Carter
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Chapter4: Equations Of Linear Functions
Section4.6: Regression And Median-fit Lines
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Listed below are the heights (cm) of winning presidential candidates and their main opponents from several recent presidential elections. Find the regression equation, letting president be the
predictor (x) variable. Find the best predicted height of an opponent given that the president had a height of 188 cm. How close is the result to the actual opponent height of 175 cm?
Question Viewer
183 175 188 177 192 188 178 183 191
Opponent 182 173 175 183 180 173 180 185 169
The regression equation is y=+ (x.
(Round the y-intercept to the nearest integer as needed. Round the slope to three decimal places as needed.)
Transcribed Image Text:Listed below are the heights (cm) of winning presidential candidates and their main opponents from several recent presidential elections. Find the regression equation, letting president be the predictor (x) variable. Find the best predicted height of an opponent given that the president had a height of 188 cm. How close is the result to the actual opponent height of 175 cm? Question Viewer 183 175 188 177 192 188 178 183 191 Opponent 182 173 175 183 180 173 180 185 169 The regression equation is y=+ (x. (Round the y-intercept to the nearest integer as needed. Round the slope to three decimal places as needed.)
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