3. The winning times (in seconds) for men's (x) and women's (v) 100-meter run in the summer Olympics from 1928 through 2004 are plotted below. The equation of the least-squares regression line is:x=-3.17 +1.42x. In 2000, Maurice Green won the men's 100-meter run with a winning time of 9.87 seconds while Marion Jones won the women's 100-meter run with a winning time of 11.5 seconds. 3.1 On the basis of the least-squares regression line, how would you rate Marion Jones' performance? 3.2 What is the slope of the regression line? Interpret the slope in terms of the times that Marion Jones and Maurice Green ran.

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3. The winning times (in seconds) for men's (x) and women's (y) 100-meter run in the summer
Olympics from 1928 through 2004 are plotted below. The equation of the least-squares
regression line is:x=-3.17 +1.42x. In 2000, Maurice Green won the men's 100-meter run
with a winning time of 9.87 seconds while Marion Jones won the women's 100-meter run
with a winning time of 11.5 seconds.
3.1 On the basis of the least-squares regression line, how would you rate Marion Jones'
performance?
3.2 What is the slope of the regression line? Interpret the slope in terms of the times that
Marion Jones and Maurice Green ran.
Transcribed Image Text:3. The winning times (in seconds) for men's (x) and women's (y) 100-meter run in the summer Olympics from 1928 through 2004 are plotted below. The equation of the least-squares regression line is:x=-3.17 +1.42x. In 2000, Maurice Green won the men's 100-meter run with a winning time of 9.87 seconds while Marion Jones won the women's 100-meter run with a winning time of 11.5 seconds. 3.1 On the basis of the least-squares regression line, how would you rate Marion Jones' performance? 3.2 What is the slope of the regression line? Interpret the slope in terms of the times that Marion Jones and Maurice Green ran.
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